当前位置: 首页 > article >正文

彩色成像的基础和应用 原理 Principles (论文引用目录)

 [1] E. Aas and J. Bogen. “Colors of Glacier Water.” Water Resources Research 24:4 (1988), 561–565.

[2] P. M. Acosta-Serafini, I. Masaki, and C. G. Sodini. “A 1/3” VGA Linear Wide Dynamic Range CMOS Image Sensor Implementing a Predictive Multiple Sampling Algorithm with Overlapping Integration Intervals.” IEEE Journal of Solid-State Circuits 39:9 (2004), 1487–1496.

[3] A. Adams and G. Haegerstrom-Portnoy. “Color Deficiency.” In Diagnosis and Management in Vision Care. Boston: Butterworth, 1987.

[4] D. L. Adams and S. Zeki. “Functional Organization of Macaque V3 for Stereoscopic Depth.”Journal of Neurophysiology 86:5 (2001), 2195–2203.

[5] J. Adams, K. Parulski, and K. Spaulding. “Color Processing in Digital Cameras.” IEEE Micro 18:6 (1998), 20–30.

[6] M. M. Adams, P. R. Hof, R. Gattass, M. J. Webster, and L. G. Ungerleider. “Visual Cortical Projections and Chemoarchitecture of Macaque Monkey Pulvinar.” Journal of Comparative Neurology 419:3 (2000), 377–393.

[7] J. E. Adams Jr. “Interactions between Color Plane Interpolation and Other Image Processing Functions in Electronic Photography.” In Proceedings of the SPIE 2416, pp. 144–155. Bellingham, WA: SPIE, 1995.

[8] A. Adams. The camera. The Ansel Adams Photography series, Little, Brown and Company,1980.

[9] A. Adams. The negative. The Ansel Adams Photography series, Little, Brown and Company,1981.

[10] A. Adams. The print. The Ansel Adams Photography series, Little, Brown and Company, 1983.

[11] E. H. Adelson and J. R. Bergen. “The Plenoptic Function and the Elements of Early Vision.” In Computational Models of Visual Processing, pp. 3–20. Cambridge, MA: MIT Press, 1991.

[12] E. H. Adelson and J. Y. A. Wang. “The Plenoptic Camera.” IEEE Transactions on Pattern Analysis and Machine Intelligence 14:2 (1992), 99–106.

[13] E. A. Adelson. “Lightness Perception and Lightness Illusions.” In The New Cognitive Neuro sciences, edited by M. Gazzaniga, 2nd edition, pp. 339–351. Cambridge, MA: MIT Press, 2000.

[14] M. Aggarwal and N. Ahuja. “Split Aperture Imaging for High Dynamic Range.” International Journal of Computer Vision 58:1 (2004), 7–17.

[15] M. Aggarwal, H. Hua, and N. Ahuja. “On Cosine-Fourth and Vignetting Effects in Real Lenses.”In Proceedings of the Eighth IEEE International Conference on Computer Vision (ICCV), 1, 1,pp. 472–479, 2001.

[16] M. Aguilar and W. S. Stiles. “Saturation of the Rod Mechanism of the Retina at High Levels of Stimulation.” Optica Acta 1:1 (1954), 59–65.

[17] W. E. Ahearn and O. Sahni. “The Dependence of the Spectral and Electrical Properties of ACPlasma Panels on the Choice and Purity of the Gas Mixture.” SID International Symposium Digest 7 (1978), 44–45.

[18] L. von Ahn, M. Blum, N. J. Hopper, and J. Langford. “Captcha: Telling Humans and Computers Apart Automatically.” In Advances in Cryptology - Proceedings of Eurocrypt 2003, Lecture Notes in Computer Science 2656, pp. 294–311. Berlin: Springer, 2003.

[19] L. von Ahn, M. Blum, N. J. Hopper, and J. Langford. “Telling Humans and Computers Apart Automatically.” Communications of the ACM 47:2 (2004), 57–60.

[20] T. Ajito, T. Obi, M. Yamaguchi, and N. Ohyama. “Multiprimary Color Display for Liquid Crystal Display Projectors using Diffraction Grating.” Optical Engineering 38:11 (1999), 1883–1888.

[21] T. Ajito, T. Obi, M. Yamaguchi, and N. Ohyama. “Expanded Color Gamut Reproduced by Six Primary Projection Display.” In Proceedings of the SPIE 3954, edited by M. H. Wu, pp. 130–137.Bellingham, WA: SPIE, 2000.

[22] N. Akahane, S. Sugawa, S. Adachi, K. Mori, T. Ishiuchi, and K. Mizobuchi. “A Sensitivity and Linearity Improvement of a 100-dB Dynamic Range CMOS Image Sensor using a Lateral Overflow Integration Capacitor.” IEEE Journal of Solid-State Circuits 41:4 (2006), 851–858.

[23] T. Akenine-M¨oller and E. Haines. Real-Time Rendering, 2nd edition. Natick, MA: A K Peters,2002.

[24] A. O. Aky¨uz and E. Reinhard. “Noise Reduction in High Dynamic Range Imaging.” Journal of Visual Communication and Image Representation 18:5 (2007), 366–376.

[25] A. O. Aky¨uz and E. Reinhard. “Perceptual Evaluation of Tone Reproduction Operators using the Cornsweet-Craik-O’Brien Illusion.” ACM Transactions on Applied Perception 4:4 (2007), 20–1 – 20–29.

[26] A. O. Aky¨uz, R. Fleming, B. Riecke, E. Reinhard, and H. B¨ulthoff. “Do HDR Displays Support LDR Content? A Psychophysical Investigation.” ACM Transactions on Graphics 26:3 (2007), 38–1 – 38–7.

[27] E. Allen. “Analytical Color Matching.” Journal of Paint Technology 39:509 (1967), 368–376.

[28] E. Allen. “Basic Equations used in Computer Color matching II. Tristimulus Match, TwoConstant Theory.” Journal of the Optical Society of America 64:7 (1974), 991–993.

[29] D. H. Alman. “CIE Technical Committee 1-29, Industrial Color Difference Evaluation Progress Report.” Colour Research and Application 18 (1993), 137–139.

[30] M. Alpern and J. Moeller. “The Red and Green Cone Visual Pigments of Deuteranomalous Trichromacy.” Journal of Physiology 266 (1977), 647–675.

[31] M. Alpern and S. Torii. “The Luminosity Curve of the Deuteranomalous Fovea.” Journal of General Physiology 52:5 (1968), 738–749.

[32] M. Alpern and S. Torii. “The Luminosity Curve of the Protanomalous Fovea.” Journal of General Physiology 52:5 (1968), 717–737.

[33] M. Alpern and T. Wake. “Cone Pigment in Human Deutan Color Vision Defects.” Journal of Physiology 266 (1977), 595–612.

[34] M. Alpern. “The Stiles-Crawford Effect of the Second Kind (SCII): A Review.” Perception 15:6 (1986), 785–799.

[35] B. Anderson and J. Winawer. “Image Segmentation and Lightness Perception.” Nature 434 (2005), 79–83.

[36] R. Anderson. “Matrix Description of Radiometric Quantities.” Applied Optics 30:7 (1991),858–867.

[37] B. L. Anderson. “Perceptual Organization and White’s Illusion.” Perception 32 (2003), 269–284.

[38] A. Angelucci, J. B. Levitt, E. J. S. Walton, J.-M. Hup´e, J. Bullier, and J. S. Lund. “Circuits for Local and Global Signal Integration in Primary Visual Cortex.” Journal of Neuroscience 22:19 (2002), 8633–8646.

[39] A. Angstr¨om. “The Albedo of Various Surfaces of Ground.” Geografiska Annalen 7 (1925), 323–342.

[40] R. A. Applegate and V. Lakshminarayanan. “Parametric Representation of Stiles-Crawford Functions: Normal Variation of Peak Location and Directionality.” Journal of the Optical Society of America A 10:7 (1993), 1611–1623.

[41] G. B. Arden. “The Importance of Measuring Contrast Sensitivity in Cases of Visual Disturbances.” British Journal of Ophthalmology 62 (1978), 198–209.

[42] L. Arend and A. Reeves. “Simultaneous Color Constancy.” Journal of the Optical Society of America A 3:10 (1986), 1743–1751.

[43] P. Artal, E. Berrio, A. Guirao, and P. Piers. “Contribution of the Cornea and Internal Surfaces to the Change of Ocular Aberrations with Age.” Journal of the Optical Society of America A 19:1 (2002), 137–143.

[44] M. Ashikhmin and J. Goral. “A Reality Check for Tone Mapping Operators.” ACM Transactions on Applied Perception 3:4 (2006), 399–411.

[45] M. Ashikhmin and P. Shirley. “An Anisotropic Phong BRDF Model.” journal of graphics tools 5:2 (2002), 25–32.

[46] M. Ashikhmin, S. Premo˘ze, and P. Shirley. “A Microfacet-Based BRDF Generator.” In Proceedings of ACM SIGGRAPH 2000, Computer Graphics Proceedings, Annual Conference Series, edited by K. Akeley, pp. 65–74. Reading, MA: Addison-Wesley, 2000.

[47] M. Ashikhmin. “A Tone Mapping Algorithm for High Contrast Images.” In Proceedings of the 13th Eurographics Workshop on Rendering, pp. 145–155. Aire-la-Ville, Switzerland: Eurographics Association, 2002.

[48] ASTM. “Standard Tables for Reference Solar Spectral Irradiances: Direct Normal and Hemispherical on 37◦ Tilted Surface.” Technical Report G173-03, American Society for Testing and Materials, West Conshohocken, PA, 2003.

[49] ASTM. “Standard Terminology of Appearance.” Technical Report E 284, American Society for Testing and Materials, West Conshohocken, PA, 2006.

[50] D. A. Atchison and G. Smith. “Chromatic Dispersions of the Ocular Media of Human Eyes.” Journal of the Optical Society of America A 22:1 (2005), 29–37.

[51] D. A. Atchison, G. Smith, and N. Efron. “The Effect of Pupil Size on Visual Acuity in Uncorrected and Corrected Myopia.” American Journal of Optometry and Physiological Optics 56:5 (1979), 315–323.

[52] J. J. Atick and N. A. Redlich. “What Does the Retina Know about Natural Scenes?” Neural Computation 4 (1992), 196–210.

[53] H. Aubert. Physiologie der Netzhaut. Breslau, Germany: E Morgenstern, 1865.

[54] V. A. Babenko, L. G. Astafyeva, and V. N. Kuzmin. Electromagnetic Scattering in Disperse Media: Inhomogeneous and Anisotropic Particles. Berlin: Springer-Verlag, 2003.

[55] R. J. Baddeley and P. J. B. Hancock. “A Statistical Analysis of Natural Images Matches Psychophysically Derived Orientation Tuning Curves.” Proceedings of the Royal Society of London B 246 (1991), 219–223.

[56] R. Bajcsy, S. W. Lee, and A. Leonardis. “Color Image Segmentation with Detection of Highlights and Local Illumination Induced by Interreflection.” In Proceedings of the International Conference on Pattern Recognition, pp. 785–790. Washington, DC: IEEE, 1990.

[57] R. Bajcsy, S. W. Lee, and A. Leonardis. “Detection of Diffuse and Specular Interface Reflections and Inter-reflections by Color Image Segmentation.” International Journal of Computer Vision 17:3 (1996), 241–272.

[58] R. M. Balboa, C. W. Tyler, and N. M. Grzywacz. “Occlusions Contribute to Scaling in Natural Images.” Vision Research 41:7 (2001), 955–964.

[59] G. V. G. Baranoski, P. Shirley, J. G. Rokne, T. Trondsen, and R. Bastos. “Simulating the Aurora Borealis.” In Eighth Pacific Conference on Computer Graphics and Applications, pp. 2–14. Los Alamitos, CA: IEEE Computer Society Press, 2000.

[60] H. B. Barlow, R. M. Hill, and W. R. Levick. “Retinal Ganglion Cells Responding Selectively to Direction and Speed of Image Motion in the Rabbit.” Journal of Physiology (London) 173 (1964), 377–407.

[61] H. B. Barlow. “The Size of Ommatidia in Apposition Eyes.” Journal of Experimental Biology 29:4 (1952), 667–674.

[62] H. B. Barlow. “Summation and Inhibition in the Frog’s Retina.” Journal of Physiology (London) 119 (1953), 69–88.

[63] H. B. Barlow. “Dark and Light Adaptation: Psychophysics.” In Handbook of Sensory Physiology VII/4, edited by D. Jameson and L. M. Hurvich, pp. 1–28. Berlin: Springer-Verlag, 1972.

[64] K. Barnard and B. Funt. “Investigations into Multi-Scale Retinex (MSR).” In Color Imaging: Vision and Technology, edited by L. W. MacDonald and M. R. Luo, pp. 9–17. New York: John Wiley and Sons, 1999.

[65] K. Barnard and B. Funt. “Camera Characterization for Color Research.” Color Research and Application 27 (2002), 152–163.

[66] K. Barnard, L. Martin, A. Coath, and B. Funt. “A Comparison of Computational Color Constancy Algorithms — Part II: Experiments with Image Cata.” IEEE Transactions on Image Processing 11:9 (2002), 985–996.

[67] C. Barnes, J. Wei, and S. K. Shevell. “Chromatic Induction with Remote Chromatic Contrast Varied in Magnitude, Spatial Frequency, and Chromaticity.” Vision Research 39 (1999), 3561–3574.

[68] N. F. Barnes. “Color Characteristics of Artists’ Paints.” Journal of the Optical Society of America 29:5 (1939), 208–214.

[69] P. Barone, A. Batardiere, K. Knoblauch, and H. Kennedy. “Laminar Distribution of Neurons in Extrastriate Areas Projecting to Visual Areas V1 and V4 Correlates with the Hierarchical Rank and Indicates the Operation of a Distance Rule.” Journal of Neuroscience 20:9 (2000), 3263–3281.

[70] B. Barsky, L. Chu, and S. Klein. “Cylindrical Coordinate Representations for Modeling Surfaces of the Cornea and Contact Lenses.” In Proceedings of the International Conference on Shape Modeling and Applications (SMI-99), edited by B. Werner, pp. 98–115. Los Alamitos, CA: IEEE Computer Society, 1999.

[71] A. Bartels and S. Zeki. “The Architecture of the Colour Centre in the Human Visual Brain: New Results and a Review.” European Journal of Neuroscience 12:1 (2000), 172–193.

[72] C. Bartleson and E. Breneman. “Brightness Perception in Complex Fields.” Journal of the Optical Society of America 57 (1967), 953–957.

[73] M. Bass, E. W. van Stryland, D. R. Williams, and W. L. Wolfe, editors. Handbook of Optics: Fundamentals, Techniques and Design, Second edition. New York: McGraw-Hill, 1995.

[74] B. Bastani, W. Cressman, and B. Funt. “Calibrated Color Mapping Between LCD and CRT Displays: A Case Study.” Colour Research and Application 30:6 (2005), 438–447.

[75] B. Baxter, H. Ravindra, and R. A. Normann. “Changes in Lesion Detectability Caused by Light Adaptation in Retinal Photoreceptors.” Investigative Radiology 17 (1982), 394–401.

[76] B. E. Bayer. “Color Imaging Array.”, 1976. U.S. Patent 3,971,065.

[77] D. A. Baylor, B. J. Nunn, and J. L. Schnapf. “The Photocurrent, Noise and Spectral Sensitivity of Rods of the Monkey Macaca fascicularis.” Journal of Physiology 357:1 (1984), 576–607.

[78] D. A. Baylor, B. J. Nunn, and J. L. Schnapf. “Spectral Sensitivity of Cones of the Monkey Macaca fascicularis.” Journal of Physiology 390:1 (1987), 145–160.

[79] H. Becker, H. Vestweber, A. Gerhard, P. Stoessel, and R. Fortte. “Novel Host Materials for Ef- ficient and Stable Phosphorescent OLED Devices.” In Proceedings of the International Display Manufacturing Conference, pp. 329–330. San Jose, CA: Society for Information Display, 2005.

[80] R. E. Bedford and G. Wyszecki. “Axial Chromatic Aberration of the Human Eye.” Journal of the Optical Society of America 47 (1957), 564–565.

[81] P. R. B´elanger. “Linear-Programming Approach to Color-Recipe Formulations.” Journal of the Optical Society of America 64:11 (1974), 1541–1544.

[82] A. J. Bell and T. J. Sejnowski. “Edges Are the ’Independent Components’ of Natural Scenes.” In Advances in Neural Information Processing Systems, pp. 831–837. Cambridge, MA: MIT Press, 1996.

[83] A. J. Bell and T. J. Sejnowski. “The Independent Components of Natural Scenes Are Edge Filters.” Vision Research 37 (1997), 3327–3338.

[84] G. Berbecel. Digital Image Display: Algorithms and Implementation. Chichester: John Wileyand Sons, 2003.

[85] T. T. J. M. Berendschot, J. van de Kraats, and D. van Norren. “Wavelength Dependence of the Stiles-Crawford Effect Explained by Perception of Backscattered Light from the Choroid.” Journal of the Optical Society of America A 18:7 (2001), 1445–1451.

[86] L. D. Bergman, B. E. Rogowitz, and L. A. Treinish. “A Rule-Based Tool for Assisting Colormap Selection.” In Proceedings of IEEE Visualization, pp. 118–125. Los Alamitos, CA: IEEE Computer Society, 1995.

[87] B. Berlin and P. Kay. Basic Color Terms: Their Universality and Evolution. Berkeley, CA: University of California Press, 1969.

[88] B. J. Berne and R. Pecora. Dynamic Light Scattering (with Applications to Chemistry, Biology and Physics). Mineola, NY: Dover Publications, 2000.

[89] R. S. Berns and M. J. Shiyu. “Colorimetric Characterization of a Desk-Top Drum Scanner using a Spectral Model.” Journal of Electronic Imaging 4 (1995), 360–372.

[90] R. S. Berns, D. H. Alman, L. Reniff, G. D. Snyder, and M. R. Balonon-Rosen. “Visual Determination of Suprathreshold Color-Difference Tolerances using Probit Analysis.” Colour Research and Application 16 (1991), 297–316.

[91] R. S. Berns, M. E. Gorzynski, and R. J. Motta. “CRT Colorimetry – Part II: Metrology.” Color Research and Application 18:5 (1993), 315–325.

[92] R. S. Berns. “Methods for Characterizing CRT Displays.” Displays 16:4 (1996), 173–182.

[93] R. S. Berns. Billmeyer and Saltzman’s Principles of Color Technology, Third edition. New York: John Wiley and Sons, 2000.

[94] I. Biederman and P. Kalocsai. “Neural and Psychological Analysis of Object and Face Recognition.” In Face Recognition: From Theory to Applications, pp. 3–25. Berlin: Springer-Verlag, 1998.

[95] M. Bigas, E. Cabruja, J. Forest, and J. Salvi. “Review of CMOS Image Sensors.” Microelectronics Journal 37:5 (2006), 433–451.

[96] J. Birnstock, J. Bl¨assing, A. Hunze, M. Scheffel, M. St¨oßel, K. Heuser, G. Wittmann, J. W¨orle, and A. Winnacker. “Screen-Printed Passive Matrix Displays Based on Light Emitting Polymers.” Applied Physics Letters 78:24 (2001), 3905–3907.

[97] J. Birnstock, J. Bl¨assing, A. Hunze, M. Scheffel, M. St¨oßel, K. Heuser, J. W¨orle, G. Wittmann, and A. Winnacker. “Screen-Printed Passive Matrix Displays and Multicolor Devices.” In Proceedings of the SPIE 4464, pp. 68–75. Bellingham, WA: SPIE, 2002.

[98] C. M. Bishop. Neural Networks for Pattern Recognition. Oxford: Oxford University Press,1995.

[99] D. L. Bitzer and H. G. Slottow. “The Plasma Display Panel — A Digitally Addressable Display with Inherent Memory.” In Proceedings of the AFIPS Conference 29, pp. 541–547. American  Federation of Information Processing Societies, 1966.

[100] H. R. Blackwell. “Luminance difference thresholds.” In Handbook of Sensory Physiology, VII/4, edited by D. Jameson and L. M. Hurvich, pp. 78–101. Berlin: Springer-Verlag, 1972.

[101] C. Blakemore and F. Campbell. “On the Existence of Neurons in the Human Visual System Electively Sensitive to Orientation and Size of Retinal Images.” Journal of Physiology 203 (1969), 237–260.

[102] B. Blakeslee and M. E. McCourt. “A Multi-Scale Spatial Filtering Account of the White Effect, Simultaneous Brightness Contrast and Grating Induction.” Vision Research 39 (1999), 4361– 4377.

[103] N. Blanc. “CCD versus CMOS — Has CCD Imaging Come to an End?” In Photogrammetric Week 01, edited by D. Fritsch and R. Spiller, pp. 131–137. Heidelberg: Wichmann Verlag, 2001.

[104] G. G. Blasdel and J. S. Lund. “Termination of Afferent Axons in Macaque Striate Cortex.” Journal of Neuroscience 3:7 (1983), 1389–1413.

[105] J. F. Blinn. “Models of Light Reflection for Computer Synthesized Pictures.” Proc. SIGGRAPH ’77, Computer Graphics 11 (1977), 192–198.

[106] J. F. Blinn. “Return of the Jaggy.” IEEE Computer Graphics and Applications 9:2 (1989), 82–89.

[107] J. F. Blinn. “What We Need Around Here Is More Aliasing.” IEEE Computer Graphics and Applications 9:1 (1989), 75–79.

[108] C. F. Bohren. “Colors of the Sea.” Weatherwise 35:5 (1982), 256–260.

[109] G. F. Bohren. “The Green Flash.” Weatherwise 35:6 (1982), 271–275.

[110] C. F. Bohren. “More About Colors of the Sea.” Weatherwise 36:6 (1983), 311–316.

[111] C. F. Bohren. “Scattering by Particles.” In Handbook of Optics: Fundamentals, Techniques and Design, Volume 1, edited by M. Bass, E. W. van Stryland, D. R. Williams, and W. L. Wolfe,Second edition. New York: McGraw-Hill, 1995.

[112] M. Born and E. Wolf. Principles of Optics, Seventh edition. Cambridge, UK: Cambridge University Press, 1999.

[113] T. Bossomaier and A. W. Snyder. “Why Spatial Frequency Processing in the Visual Cortex?”Vision Research 26 (1986), 1307–1309.

[114] P. Bouguer. Trait´e d’optique sur la gradation de la lumiere: Ouvrage posthume. Paris: Ml’Abb´e de la Caille, 1760.

[115] D. Boussaoud, L. G. Ungerleider, and R. Desimone. “Pathways for Motion Analysis: Cortical Connections of the Medial Superior Temporal and Fundus of the Superior Temporal Visual Areas in the Macaque.” Journal of Comparative Neurology 296:3 (1990), 462–495.

[116] A. Bovik, editor. Handbook of Image and Video Processing. San Diego, CA: Academic Press,2000.

[117] R. M. Boynton and D. N. Whitten. “Visual Adaptation in Monkey Cones: Recordings of Late Receptor Potentials.” Science 170 (1970), 1423–1426.

[118] R. M. Boynton. Human Color Vision. New York: Holt, Rinehart and Winston, 1979.

[119] D. H. Brainard and W. T. Freeman. “Bayesean Color Constancy.” Journal of the Optical Society of America A 14:7 (1997), 1393–1411.

[120] D. H. Brainard, W. A. Brunt, and J. M. Speigle. “Color Constancy in the Nearly Natural Image. I. Assymetric Matches.” Journal of the Optical Society of America A 14:9 (1997), 2091–2110.

[121] D. H. Brainard, A. Roorda, Y. Yamauchi, J. B. Calderone, A. Metha, M. Neitz, J. Neitz, D. R. Williams, and G. H. Jacobs. “Functional Consequences of the Relative Numbers of L and M Cones.” Journal of the Optical Society of America A 17:3 (2000), 607–614.

[122] D. H. Brainard, D. G. Pelli, and T. Robson. “Display Characterization.” In Encylopedia of Imaging Science and Technology, edited by J. Hornak, pp. 172–188. New York: John Wiley and Sons, 2002.

[123] D. H. Brainard. “Color Constancy in the Nearly Natural Image. II. Achromatic Loci.” Journal of the Optical Society of America A 15 (1998), 307–325.

[124] G. J. Braun and M. D. Fairchild. “Techniques for Gamut Surface Definition and Visualization.” In Proceedings of the 5th IS&T/SID Color Imaging Conference, pp. 147–152. Springfield, VA: IS&T, 1997.

[125] G. Brelstaff and F. Chessa. “Practical Application of Visual Illusions: Errare Humanum Est.” In Proceedings of the 2nd Symposium on Applied Perception in Graphics and Visualization (APGV), pp. 161–161. New York: ACM, 2005.

[126] E. Breneman. “Corresponding Chromaticities for Different States of Adaptation to Complex Visual Fields.” Journal of the Optical Society of America, A 4 (1987), 1115–1129.

[127] P. Bressan, E. Mingolla, L. Spillmann, and T. Watanabe. “Neon Color Spreading: A Review.” Perception 26:11 (1997), 1353–1366.

[128] H. Brettel and F. Vi´enot. “Web Design for the Colour-Blind User.” In Colour Imaging: Vision and Technology, edited by L. W. MacDonald and M. R. Luo, pp. 55–71. Chichester, UK: John Wiley and Sons, Ltd., 1999.

[129] H. Brettel, F. Vi´enot, and J. D. Mollon. “Computerized Simulation of Color Appearance for Dichromats.” Journal of the Optical Society of America A 14:10 (1997), 2647–2655.

[130] D. Brewster. “A Note Explaining the Cause of an Optical Phenomenon Observed by the Rev. W. Selwyn.” In Report of the Fourteenth Meeting of the British Association for the Advancement of Science, edited by J. Murray. London, 1844.

[131] M. H. Brill and J. Larimer. “Avoiding On-Screen Metamerism in N-Primary Displays.” Journal of the Society for Information Display 13:6 (2005), 509–516.

[132] M. H. Brill. “Image Segmentation by Object Color: A Unifying Framework and Connection to Color Constancy.” Journal of the Optical Society of America A 7:10 (1986), 2041–2047.

[133] G. S. Brindley. “The Discrimination of After-Images.” Journal of Physiology 147:1 (1959), 194–203.

[134] R. W. Brislin. “The Ponzo Illusion: Additional Cues, Age, Orientation, and Culture.” Journal of Cross-Cultural Psychology 5:2 (1974), 139–161.

[135] K. H. Britten, M. N. Shadlen, W. T. Newsome, and J. A. Movshon. “The Analysis of Visual Motion: A Comparison of Neuronal and Psychophysical Performance.” Journal of Neuroscience 12:12 (1992), 4745–4765.

[136] A. Brockes. “Vergleich der Metamerie-Indizes bei Lichtartwechsel von Tageslicht zur Gl¨uhlampe and zu verschiedenen Leuchtstofflampen.” Die Farbe 18:223.

[137] A. Brockes. “Vergleich von berechneten Metamerie-Indizes mit Abmusterungsergebnissen.” Die Farbe 19:135 (1970), 1–10.

[138] K. Brodmann. Vergleichende Lokalisationslehre der Großhirnrhinde. Leipzig, Germany: Barth Verlag, 1909. Translated by L J Garey, Localisation in the Cerebral Cortex (Smith-Gordon, London, 1994).

[139] J. Broerse, T. Vladusich, and R. P. O’Shea. “Colour at Edges and Colour Spreading in McCollough Effects.” Vision Research 39 (1999), 1305–1320.

[140] N. Bruno, P. Bernardis, and J. Schirillo. “Lightness, Equivalent Backgrounds and Anchoring.” Perception and Psychophysics 59:5 (1997), 643–654.

[141] G. Buchsbaum. “A Spatial Processor Model for Object Color Perception.” Journal of the Franklin Institute 310 (1980), 1–26.

[142] Bureau International des Poids et Mesures. “Le Syst`eme International d’Unit´es (The International System of Units).”, 2006.

[143] J. H. Burroughes, D. D. C. Bradley, A. R. Brown, R. N. Marks, K. Mackay, R. H. Friend, P. L. Burns, and A. B. Holmes. “Light-Emitting Diodes based on Conjugated Polymers.” Nature 347:6293 (1990), 539–541.

[144] G. J. Burton and I. R. Moorhead. “Color and Spatial Structure in Natural Scenes.” Applied Optics 26:1 (1987), 157–170.

[145] A. Calabria and M. D. Fairchild. “Herding CATs: A Comparison of Linear Chromatic Adaptation Transforms for CIECAM97s.” In IS&T/SID 9th Color Imaging Conference, pp. 174–178. Springfield, VA: Society for Imaging Science and Technology, 2001.

[146] A. J. Calabria and M. D. Fairchild. “Perceived Image Contrast and Observer Preference I: The Effects of Lightness, Chroma, and Sharpness Manipulations on Contrast Perception.” Journal of Imaging Science and Technology 47 (2003), 479–493.

[147] A. Calabria and M. D. Fairchild. “Perceived Image Contrast and Observer Preference II: Empirical Modeling of Perceived Image Contrast and Observer Preference Data.” Journal of Imaging Science and Technology 47 (2003), 494–508.

[148] E. M. Callaway and A. K. Wiser. “Contributions of Individual Layer 2-5 Spiny Neurons to Local Circuits in Macaque Primary Visual Cortex.” Visual Neuroscience 13:5 (1996), 907–922.

[149] E. Camalini, editor. Optical and Acoustical Holography. New York: Plenum Press, 1972.

[150] F. W. Campbell and A. H. Gregory. “Effect of Pupil Size on Acuity.” Nature (London) 187:4743 (1960), 1121–1123.

[151] F. W. Campbell and R. W. Gubisch. “Optical Quality of the Human Eye.” Journal of Physiology 186 (1966), 558–578.

[152] F. W. Campbell and J. G. Robson. “Application of Fourier Analysis to the Visibility of Gratings.” Journal of Physiology (London) 197 (1968), 551–566.

[153] V. C. Cardei and B. Funt. “Color Correcting Uncalibrated Digital Camera.” Journal of Imaging Science and Technology 44:4 (2000), 288–294.

[154] B. S. Carlson. “Comparison of Modern CCD and CMOS Image Sensor Technologies and Systems for Low Resolution Imaging.” In Proceedings of IEEE Sensors, 1, 1, pp. 171–176, 2002.

[155] J. E. Carnes and W. F. Kosonocky. “Noise Sources in Charge-Coupled Devices.” RCA Review 33 (1972), 327–343.

[156] J. E. Carnes and W. F. Kosonocky. “Noise Sources in Charge-Coupled Devices.” In SPIE Milestone Series 177, pp. 101–109. Bellingham, WA: SPIE, 2003.

[157] V. A. Casagrande. “A Third Parallel Pathway to the Primate Retina V1.” Trends in Neuroscience 17 (1994), 305–310.

[158] J. Cataliotti and A. Gilchrist. “Local and Global Processes in Surface Lightness Perception.” Perception and Psychophysics 57:2 (1995), 125–135.

[159] P. Cavanagh and S. Anstis. “The Contribution of Color and Motion in Normal and ColorDeficient Observers.” Vision Research 31:12 (1991), 2109–2148.

[160] P. Cavanagh and Y. G. Leclerc. “Shape from Shadows.” Journal of Experimental Psychology 15:1 (1989), 3–27.

[161] A. Chalmers, T. Davis, and E. Reinhard, editors. Practical Parallel Rendering. Natick, MA: A K Peters, 2002.

[162] Y.-C. Chang and J. F. Reid. “RGB Calibration for Color Image Analysis in Machine Vision.” IEEE Transactions on Image Processing 5:10 (1996), 1414–1422.

[163] G. Charles and G. van Loan. Matrix Computations, Third edition. Baltimore, MD: The John Hopkins University Press, 1996.

[164] W. N. Charman. “The Flawed Retinal Image. Part I.” Optician 190:5020 (1985), 31–34.

[165] W. N. Charman. “The Flawed Retinal Image. Part II.” Optician 190:5022 (1985), 16–20.

[166] W. N. Charman. “Optics of the Eye.” In Handbook of Optics: Fundamentals, Techniques and Design, Volume 1, edited by M. Bass, E. W. van Stryland, D. R. Williams, and W. L. Wolfe, Second edition. New York: McGraw-Hill, 1995.

[167] B. Chen and W. Makous. “Light Capture by Human Cones.” Journal of Physiology 414 (1989), 89–109.

[168] C.-J. Chen, A. Lien, and M. I. Nathan. “4 × 4 and 2 × 2 Matrix Formulations for the Optics in Stratified and Biaxial Media.” Journal of the Optical Society of America A 14:11 (1997), 3125–3134.

[169] Y. Chen, J. Au, P. Kazlas, A. Ritenour, H. Gates, and J. Goodman. “Ultra-Thin, HighResolution, Flexible Electronic Ink Displays Addressed by a-Si Active-Matrix TFT Backplanes on Stainless Steel Foil.” In Electron Devices Meeting, IEDM ’02, pp. 389–392, 2002.

[170] W.-C. Cheng and M. Pedram. “Power Minimization in a Backlit TFT=LCD Display by Concurrent Brightness and Contrast Scaling.” IEEE Transactions on Consumer Electronics 50:1 (2004), 25–32.

[171] M. E. Chevreul. De la loi du contraste simultane des couleurs. Paris: Pitois Levreault, 1839.

[172] C.-C. Chiao, T. W. Cronin, and D. Osorio. “Color Signals in Natural Scenes: Characteristics of Reflectance Spectra and the Effects of Natural Illuminants.” Journal of the Optical Society of America A 17:2 (2000), 218–224.

[173] C. D. Child. “Discharge from Hot CaO.” Physical Review I 32:5 (1911), 492–511.

[174] K. Chiu, M. Herf, P. Shirley, S. Swamy, C. Wang, and K. Zimmerman. “Spatially Nonuniform Scaling Functions for High Contrast Images.” In Proceedings of Graphics Interface ’93, pp. 245–253. Toronto, Canada: Canadian Information Processing Society, 1993.

[175] I. Choi, H. Shim, and N. Chang. “Low Power Color TFT-LCD Display for Hand-Held Embedded Systems.” In Proceedings of the Symposium on Low Power Electronics and Design,pp. 112–117, 2002.

[176] T. J. Cholewo and S. Love. “Gamut Boundary Determination using Alpha-Shapes.” In Proceedings of the 7th IS&T/SID Color Imaging Conference, pp. 200–204. Springfield, VA: IS&T,1999.

[177] B. Choubey, S. Aoyoma, S. Otim, D. Joseph, and S. Collins. “An Electronic Calibration Scheme for Logarithmic CMOS Pixels.” IEEE Sensors Journal 6:4 (2006), 950–056.

[178] P. Choudhury and J. Tumblin. “The Trilateral Filter for High Contrast Images and Meshes.” In EGRW ’03: Proceedings of the 14th Eurographics Workshop on Rendering, pp. 186–196. Aire-la-Ville, Switzerland: Eurographics Association, 2003.

[179] R. E. Christoffersen. Basic Principles and Techniques of Molecular Quantum Mechanics. New York: Springer-Verlag, 1989.

[180] C. Chubb, G. Sperling, and J. A. Solomon. “Texture Interactions Determine Perceived Contrast.” Proceedings of the National Academy of Sciences of the United States of America 86:23 (1989), 9631–9635.

[181] J. W. Chung, H. R. Guo, C. T. Wu, K. C. Wang, W. J. Hsieh, T. M. Wu, and C. T. Chung. “LongOperating Lifetime of Green Phosphorescence Top-Emitting Organic Light Emitting Devices.” In Proceedings of the International Display Manufacturing Conference, pp. 278–280. San Jose, CA: Society for Information Display, 2005.

[182] CIE. “CIE Proceedings 1951.” Technical Report Vol. 1, Sec 4; Vol 3, p. 37, Commision Internationale De L’Eclairage, Vienna, 1951.

[183] CIE. “Light as a True Visual Quantity: Principles of Measurement.” Technical Report Publ. No. 41 (TC-1.4), Commision Internationale De L’Eclairage, Vienna, 1978.

[184] CIE. “A Method For Assessing the Quality of Daylight Simulators for Colorimetry.” Technical Report CIE 51-1981, Commision Internationale De L’Eclairage, Vienna, 1981.

[185] CIE. “The Basis of Physical Photometry.” Technical Report Publ. No. 18.2 (TC-1.2), Commision Internationale De L’Eclairage, Vienna, 1983.

[186] CIE. “Colorimetry, Second Edition.” Technical Report CIE 15.2, Commision Internationale De L’Eclairage, Vienna, 1986.

[187] CIE. “International Lighting Vocabulary.” Technical Report 17.4, Commision Internationale De L’Eclairage, Vienna, 1987.

[188] CIE. “Special Metamerism Index: Change in Observer.” Technical Report CIE 80-1989, Commision Internationale De L’Eclairage, Vienna, 1989.

[189] CIE. “CIE 1988 2◦ Spectral Luminous Efficiency Function for Photopic Vision.” Technical Report Publ. No. 86, Commision Internationale De L’Eclairage, Vienna, 1990.

[190] CIE. “Method of Measuring and Specifying Colour Rendering Properties of Light Sources.” Technical Report CIE 13.3-1995, Commision Internationale De L’Eclairage, Vienna, 1995.

[191] CIE. “The CIE 1997 Interim Colour Appearance Model (Simple Version), CIECAM97s.” Technical Report CIE 131-1998, Commision Internationale De L’Eclairage, Vienna, 1998.

[192] CIE. “Virtual Metamers for Assessing the Quality of Simulators of CIE Illuminant D50.” Technical Report Supplement 1-1999 to CIE 51-1981, Commision Internationale De L’Eclairage, Vienna, 1999.

[193] CIE. “CIE Standard Illuminants for Colorimetry, Standard CIE S005/E-1998.” Technical Report Standard CIE S005/E-1998, Commision Internationale De L’Eclairage, Vienna, 2004. Published also as ISO 10526/CIE S 005/E-1999.

[194] CIE. “Colorimetry, Third Edition.” Technical Report CIE Publ. No. 15:2004, Commision Internationale De L’Eclairage, Vienna, 2004.

[195] CIE. “A Colour Appearance Model for Colour Management Systems: CIECAM02.” Technical Report CIE 159:2004, Commision Internationale De L’Eclairage, Vienna, 2004.

[196] F. R. Clapper and J. A. C. Yule. “The Effect of Multiple Internal Reflections on the Densities of Halftone Prints on Paper.” Journal of the Optical Society of America 43 (1953), 600–603.

[197] F. R. Clapper and J. A. C. Yule. “Reproduction of Color with Halftone Images.” In Proceedings of the Technical Association of Graphic Arts, pp. 1–12. Chicago, IL: Technical Assn. of the Graphic Arts, 1955.

[198] F. J. J. Clark, R. McDonald, and B. Rigg. “Modifications to the JPC79 Colour-Difference Formula.” Journal of the Society of Dyers and Colourists 100 (1984), 128–132, (Errata: 281– 282).

[199] S. Coe, W.-K. Woo, M. Bawendi, and V. Bulovic. “Electroluminescence from Single Monolayers of Nanocrystals in Molecular Organic Devices.” Nature 420:6917 (2002), 800–803.

[200] M. F. Cohen and J. R. Wallace. Radiosity and Realistic Image Synthesis. Cambridge, MA: Academic Press, Inc., 1993.

[201] J. Cohen. “Dependency of the Spectral Reflectance Curves of the Munsell Color Chips.” Psychonomic Science 1 (1964), 369–370.

[202] M. Colbert, E. Reinhard, and C. E. Hughes. “Painting in High Dynamic Range.” Journal of Visual Communication and Image Representation 18:5 (2007), 387–396.

[203] M. Collet. “Solid-State Image Sensors.” Sensors and Actuators 10 (1986), 287–302.

[204] D. Comaniciu and P. Meer. “Mean Shift: A Robust Approach toward Feature Space Analysis.” IEEE Transactions on Pattern Analysis and Machine Intelligence 24:5 (2002), 603–619.

[205] B. Comiskey, J. D. Albert, H. Yoshizawa, and J. Jacobson. “An Electrophoretic Ink for AllPrinted Reflective Electronic Displays.” Nature 394:6690 (1998), 253–255.

[206] M. Corbetta, F. M. Miezin, S. Dobmeyer, G. L. Shulman, and S. E. Petersen. “Selective and Divided Attention during Visual Discriminations of Shape, Color and Speed: Functional Anatomy by Positron Emission Tomography.” Journal of Neuroscience 11:8 (1991), 2383–2402.

[207] T. N. Cornsweet and D. Teller. “Relation of Increment Thresholds to Brightness and Luminance.” Journal of the Optical Society of America 55 (1965), 1303–1308.

[208] T. N. Cornsweet. Visual Perception. New York: Academic Press, 1970.

[209] N. P. Cottaris and R. L. de Valois. “Temporal Dynamics of Chromatic Tuning in Macaque Primary Visual Cortex.” Nature 395:6705 (1998), 896–900.

[210] W. B. Cowan and N. Rowell. “On the Gun Independence and Phosphor Constancy of Color Video Monitors.” Color Research and Application 11 (1986), Supplement 34–38.

[211] W. B. Cowan. “An Inexpensive Scheme for Calibration of a Colour Monitor in Terms of CIE Standard Coordinates.” Proc. SIGGRAPH ’83 Computer Graphics 17:3 (1983), 315–321.

[212] B. H. Crawford. “The Scotopic Visibility Function.” Proceedings of the Physical Society of London 62:5 (1949), 321–334.

[213] G. P. Crawford, editor. Flexible Flat Panel Displays. Chichester, UK: John Wiley and Sons, 2005.

[214] W. Crookes. “The Bakerian lecture: On the Illumination of Lines of Electrical Pressure, and the Trajectory of Molecules.” Philosophical Transactions of the Royal Society of London 170 (1879), 135–164.

[215] M. E. Crovella and M. S. Taqqu. “Estimating the Heavy Tail Index from Scaling Properties.” Methodology and Computing in Applied Probability 1:1 (1999), 55–79.

[216] R. Cruz-Coke. Colour Blindness — An Evolutionary Approach. Springfield, IL: Charles C Springfield, 1970.

[217] R. Cucchiara, C. Grana, M. Piccardi, A. Prati, and S. Sirotti. “Improving Shadow Suppression in Moving Object Detection with HSV Color Information.” In IEEE Intelligent Transportation Systems, pp. 334–339. IEEE Press, 2001.

[218] J. A. Curcio and C. C. Petty. “The Near-Infrared Absorption Spectrum of Liquid Water.” Journal of the Optical Society of America 41:5 (1951), 302–304.

[219] C. A. Curcio, K. R. Sloan, R. E. Kalina, and A. E. Hendrickson. “Human Photoreceptor Topography.” Journal of Comparative Neurology 292:4 (1990), 497–523.

[220] C. A. Curcio, K. A. Allen, K. R. Sloan, C. L. Lerea, J. B. Hurley, I. B. Klock, and A. H. Milam. “Distribution and Morphology of Human Cone Photoreceptors Stained with Anti-Blue Opsin.” Journal of Comparative Neurology 312:4 (1991), 610–624.

[221] D. M. Dacey and B. B. Lee. “The ’Blue-On’ Opponent Pathways in Primate Retina Originates from a Distinct Bistratified Ganglion Cell.” Nature 367:6465 (1994), 731–735.

[222] D. M. Dacey and B. B. Lee. “Cone Inputs to the Receptive Field of Midget Ganglion Cells in the Periphery of the Macaque Retina.” Investigative Ophthalmology and Visual Science, Supplement 38 (1997), S708.

[223] D. M. Dacey and B. B. Lee. “Functional Architecture of Cone Signal Pathways in the Primate Retina.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. Sharpe, pp. 181–202. Cambridge, UK: Cambridge University Press, 1999.

[224] D. M. Dacey and M. R. Petersen. “Dendritic Field Size and Morphology of Midget and Parasol Ganglion Cells of the Human Retina.” Proceedings of the National Academy of Sciences of the United States of America 89:20 (1992), 9666–9670.

[225] D. M. Dacey. “Morphology of a Small-Field Bistratified Ganglion Cell Type in the Macaque and Human Retina.” Visual Neuroscience 10 (1993), 1081–1098.

[226] D. M. Dacey. “The Mosaic of Midget Ganglion Cells in the Human Retina.” Journal of Neuroscience 13:12 (1993), 5334–5355.

[227] D. M. Dacey. “Parallel Pathways for Spectral Coding in Primate Retina.” Annual Review of Neuroscience 23 (2000), 743–775.

[228] S. C. Dakin and P. J. Bex. “Natural Image Statistics Mediate Brightness Filling In.” Proceedings of the Royal Society of London, B 270 (2003), 2341–2348.

[229] S. Daly. “The Visible Differences Predictor: An Algorithm for the Assessment of Image Fidelity.” In Digital Images and Human Vision, edited by A. Watson, pp. 179–206. Cambridge, MA: MIT Press, 1993.

[230] A. Damasio, T. Yamada, H. Damasio, J. Corbett, and J. McKnee. “Central Achromatopsia: Behavioral, Anatomic, and Physiologic Aspects.” Neurology 30:10 (1980), 1064–1071.

[231] K. J. Dana, B. van Ginneken, S. K. Nayar, and J. J. Koenderink. “Reflectance and Texture of Real World Surfaces.” ACM Transactions on Computer Graphics 18:1 (1999), 1–34.

[232] K. J. Dana. “BRDF/BTF Measurement Device.” In Proceedings of the Eighth IEEE International Conference on Computer Vision (ICCV), pp. 460–466. Washington, DC: IEEE, 2001.

[233] J. L. Dannemiller. “Spectral Reflectance of Natural Objects: How Many Basis Functions Are Necessary?” Journal of the Optical Society of America A 9:4 (1992), 507–515.

[234] J. Daugman. “High Confidence Visual Recognition of Persons by a Test of Statistical Independence.” IEEE Transactions on Pattern Analysis and Machine Intelligence 15:11 (1993), 1148–1161.

[235] R. Davis and K. S. Gibson. Filters for the Reproduction of Sunlight and Daylight and the Determination of Color Temperature. Bureau of Standards, Miscellaneous. Publication 114, Washington, DC, 1931.

[236] H. Davson. Physiology of the Eye, Fifth edition. Pergamon Press, 1990.

[237] E. A. Day, L. Taplin, and R. S. Berns. “Colorimetric Characterization of a Computer-Controlled Liquid Crystal Display.” Color Research and Application 29:5 (2004), 365–373.

[238] P. Debevec and J. Malik. “Recovering High Dynamic Range Radiance Maps from Photographs.” In Proceedings SIGGRAPH ’97, Computer Graphics Proceedings, Annual Conference Series, pp. 369–378. Reading, MA: Addison-Wesley, 1997.

[239] P. E. Debevec. “Rendering Synthetic Objects into Real Scenes: Bridging Traditional and Image-Based Graphics with Illumination and High Dynamic Range Photography.” In Proceedings of SIGGRAPH ’98, Computer Graphics Proceedings, Annual Conference Series, pp. 45–50. Reading, MA: Addison-Wesley, 1998.

[240] P. E. Debevec. “A Tutorial on Image-Based Lighting.” IEEE Computer Graphics and Applications 22:2 (2002), 26–34.

[241] S. Decker, R. McGrath, K. Brehmer, and C. Sodini. “A 256 × 256 CMOS Imaging Array with Wide Dynamic Range Pixels and Column-Parallel Digital Output.” In IEEE International Solid-State Circuits Conference (ISSCC), pp. 176–177, 1998.

[242] C. DeCusatis, editor. Handbook of Applied Photometry. Philadelphia: American Institute of Physics, 1997.

[243] M. F. Deering. “A Photon Accurate Model of the Human Eye.” ACM Transactions on Graphics 24:3 (2005), 649–658.

[244] P. Delahunt and D. Brainard. “Control of Chromatic Adaptation Signals from Separate Cone Classes Interact.” Vision Research 40 (2000), 2885–2903.

[245] F. Delamare and B. Guineau. Colors: The Story of Dyes and Pigments. New York: Harry N Abrams, 2000.

[246] E. Demichel. Le Proc´ed´e 26 (1924), 17–21.

[247] E. Demichel. Le Proc´ed´e 26 (1924), 26–27.

[248] E. J. Denton. “The Contributions of the Orientated Photosensitive and Other Molecules to the Absorption of the Whole Retina.” Proceedings of the Royal Society of London, B 150:938 (1959), 78–94.

[249] G. Derra, H. Moensch, E. Fischer, H. Giese, U. Hechtfischer, G. Heusler, A. Koerber, U. Niemann, F.-C. Noertemann, P. Pekarski, J. Pollmann-Retsch, A. Ritz, and U. Weichmann. “UHP Lamp Systems for Projection Applications.” Journal of Physics D: Applied Physics 38 (2005), 2995–3010.

[250] A. M. Derrington, J. Krauskopf, and P. Lennie. “Chromatic Mechanisms in Lateral Geniculate Nucleus of Macaque.” Journal of Physiology (London) 357 (1984), 241–265.

[251] K. Devlin, A. Chalmers, and E. Reinhard. “Visual Self-Calibration and Correction for Ambient Illumination.” ACM Transactions on Applied Perception 3:4 (2006), 429–452.

[252] D. S. Dewald, S. M. Penn, and M. Davis. “Sequential Color Recapture and Dynamic Filtering: A Method of Scrolling Color.” SID Symposium Digest of Technical Papers 32:1 (2001), 1076– 1079.

[253] J. M. DiCarlo and B. A. Wandell. “Rendering High Dynamic Range Images.” In Proceedings of the SPIE 3965 (Electronic Imaging 2000 Conference), pp. 392–401. Bellingham, WA: SPIE, 2000.

[254] J. Dillon, R. H. Wang, and S. J. Atherton. “Photochemical and Photophysical Studies on Human Lens Constituents.” Photochemistry and Photobiology 52 (1990), 849–854.

[255] J. Dillon. “Photochemical Mechanisms in the Lens.” In The Ocular Lens, edited by H. Maisel, pp. 349–366. New York: Marcel Dekker, 1985.

[256] R. W. Ditchburn. Eye Movements and Visual Perception. Oxford, UK: Clarendon Press, 1973.

[257] K. R. Dobkins. “Moving Colors in the Lime Light.” Neuron 25 (2000), 15–18.

[258] D. Doherty and G. Hewlett. “Pulse Width Modulation Control in DLP Projectors.” Texas Instruments Technical Journal, pp. 115–121.

[259] D. W. Dong and J. J. Atick. “Statistics of Natural Time-Varying Images.” Network: Computation in Neural Systems 6:3 (1995), 345–358.

[260] R. W. Doty. “Nongeniculate Afferents to Striate Cortex in Macaques.” Journal of Comparative Neurology 218:2 (1983), 159–173.

[261] R. F. Dougherty and A. R. Wade. Available online (Vischeck: About Daltonize).

[262] J. E. Dowling. The Retina: An Approachable Part of the Brain. Cambridge, MA: Belknap Press, 1987.

[263] F. Drago, W. L. Martens, K. Myszkowski, and H.-P. Seidel. “Perceptual Evaluation of Tone Mapping Operators with Regard to Similarity and Preference.” Technical Report MPI-I-2002- 4-002, Max Plank Institut f¨ur Informatik, Saarbr¨ucken, Germany, 2002.

[264] F. Drago, K. Myszkowski, T. Annen, and N. Chiba. “Adaptive Logarithmic Mapping for Displaying High Contrast Scenes.” Computer Graphics Forum 22:3 (2003), 419–426.

[265] M. Drew and B. Funt. “Natural Metamers.” Computer Vision, Graphics and Image Processing 56:2 (1992), 139–151.

[266] M. S. Drew, J. Wei, and Z. N. Li. “Illumination-Invariant Image Retrieval and Video Segmentation.” Pattern Recognition 32:8 (1999), 1369–1388.

[267] D. D. Dudley. Holography: A Survey. Washington, DC: Technology Utilization Office, National Aeronautics and Space Administration, 1973.

[268] R. O. Duncan and G. M. Boynton. “Cortical Magnification within Human Primary Visual Cortex Correlates with Acuity Thresholds.” Neuron 38:4 (2003), 659–671.

[269] A. D¨ur. “An Improved normalization for the Ward Reflectance Model.” journal of graphics tools 11:1 (2006), 51–59.

[270] F. Durand and J. Dorsey. “Fast Bilateral Filtering for the Display of High-Dynamic-Range Images.” ACM Transactions on Graphics 21:3 (2002), 257–266.

[271] P. Dutr´e, P. Bekaert, and K. Bala. Advanced Globel Illumination. Natick, MA: A K Peters, 2003.

[272] D. M. Eagleman. “Visual Illusions and Neurobiology.” Nature Reviews Neuroscience 2:12 (2001), 920–926.

[273] F. Ebner and M. D. Fairchild. “Constant Hue Surfaces in Color Space.” In Proceedings of the SPIE 3300, pp. 107–117. Bellingham, WA: SPIE, 1998.

[274] F. Ebner and M. D. Fairchild. “Development and Testing of a Color Space (IPT) with Improved Hue Uniformity.” In IS&T/SID Sixth Color Imaging Conference: Color Science, Systems and Applications, pp. 8–13. Springfield, VA: Society for Imaging Science & Technology, 1998.

[275] M. Ebner. Color Constancy. Chichester, UK: John Wiley and Sons, Ltd., 2007.

[276] J. G. Eden. “Information Display Early in the 21st Century: Overview of Selected Emissive Display Technologies.” Proceedings of the IEEE 94:3 (2006), 567–574.

[277] W. Ehrenstein. “ ¨ Uber Abwandlungen der L Hermannschen Heiligkeitserscheinung.” Zeitschrift f¨ur Psychologie 150 (1941), 83–91.

[278] W. Ehrenstein. “Modifications of the Brightness Phenomenon of L Hermann.” In The Perception of Illusory Contours, edited by S. Petry and G. E. Meyer. New York: Springer-Verlag, 1987. Translated by A Hogg from [277].

[279] A. Einstein. “Ist die Tr¨agheit eines K¨orpers von seinem Energieinhalt abh¨angig?” Annalen der Physik 18:13 (1905), 639–641.

[280] J. H. Elder. “Are Edges Incomplete?” International Journal of Computer Vision 34:2/3 (1999), 97–122.

[281] H. D. Ellis. “Introduction to Aspects of Face Processing: Ten questions in Need of Answers.” In Aspects of Face Processing, edited by H. Ellis, M. Jeeves, F. Newcombe, and A. Young, pp. 3–13. Dordrecht, The Netherlands: Nijhoff, 1986.

[282] S. A. Engel, X. Zhang, and B. A. Wandell. “Color Tuning in Human Visual Cortex Measured using Functional Magnetic Resonance Imaging.” Nature 388:6637 (1997), 68–71.

[283] P. G. Engeldrum. “Computing Color Gamuts of Ink-Jet Printing Systems.” Proceedings of the Society for Information Display 27 (1986), 25–30.

[284] C. Enroth-Cugell and J. G. Robson. “The Contrast Sensitivity of Retinal Ganglion Cells of the Cat.” Journal of Physiology (London) 187 (1966), 517–552.

[285] C. J. Erkerlers, J. van der Steen, R. M. Steinman, and H. Collewijn. “Ocular Vergence under Natural Conditions I: Continuous Changes of Target Distance along the Median Plane.” Proceedings of the Royal Society of London B326 (1989), 417–440.

[286] C. J. Erkerlers, R. M. Steinman, and H. Collewijn. “Ocular Vergence under Natural Conditions II: Gaze Shifts between Real Targets Differing in Distance and Direction.” Proceedings of the Royal Society of London B326 (1989), 441–465.

[287] D. C. van Essen and J. L. Gallant. “Neural Mechanisms of Form and Motion Processing in the Primate Visual System.” Neuron 13:1 (1994), 1–10.

[288] R. Evans. The Perception of Color. New York: John Wiley & Sons, 1974.

[289] G. L. Fain, H. R. Matthews, M. C. Cornwall, and Y. Koutalos. “Adaptation in Vertebrate Photoreceptors.” Physiological Review 81 (2001), 117–151.

[290] M. D. Fairchild and G. M. Johnson. “On Contrast Sensitivity in an Image Difference Model.” In IS&T PICS Conference, pp. 18–23. Springfield, VA: Society for Imaging Science and Technology, 2001.

[291] M. D. Fairchild and G. Johnson. “Meet iCAM: A Next-Generation Color Appearance Model.” In Proceedings of the IS&T/SID 10th Color Imaging Conference, pp. 33–38. Springfield, VA: Society for Imaging Science and Technology, 2002.

[292] M. D. Fairchild and G. M. Johnson. “The iCAM Framework for Image Appearance, Image Differences, and Image Quality.” Journal of Electronic Imaging 13 (2004), 126–138.

[293] M. D. Fairchild and G. M. Johnson. “METACOW: A Public-Domain, High-Resolution, FullyDigital, Extended-Dynamic-Range, Spectral Test Target for Imaging System Analysis and Simulation.” In IS&T/SID 12th Color Imaging Conference, pp. 239–245. Springfield, VA: Society for Imaging Science and Technology, 2004.

[294] M. D. Fairchild and G. M. Johnson. “On the Salience of Novel Stimuli: Adaptation and Image Noise.” In IS&T/SID 13th Color Imaging Conference, pp. 333–338. Springfield, VA: Society for Imaging Science and Technology, 2005.

[295] M. D. Fairchild and E. Pirrotta. “Predicting the Lightness of Chromatic Object Colors using CIELAB.” Color Research and Application 16 (1991), 385–393.

[296] M. D. Fairchild and L. Reniff. “Time-Course of Chromatic Adaptation for Color-Appearance Judgements.” Journal of the Optical Society of America 12 (1995), 824–833.

[297] M. D. Fairchild and D. R. Wyble. “Colorimetric Characterization of the Apple Studio Display (Flat Panel LCD).” Technical report, Munsell Color Science Laboratory, Rochester, NY, 1998.

[298] M. D. Fairchild, E. Pirrotta, and T. G. Kim. “Successive-Ganzfeld Haploscopic Viewing Technique for Color-Appearance Research.” Color Research and Application 19 (1994), 214–221.

[299] M. D. Fairchild. “Formulation and Testing of an Incomplete-Chromatic-Adaptation Model.” Color Research and Application 16 (1991), 243–250.

[300] M. D. Fairchild. “A Model of Incomplete Chromatic Adaptation.” In Proceedings 22nd Session of the CIE, pp. 33–34. Vienna: Commission Internationale de l’Eclairage, 1991.

[301] M. D. Fairchild. “A Revision of CIECAM97s for Practical Applications.” Color Research and Application 26 (2001), 418–427.

[302] M. D. Fairchild. Color Appearance Models, Second edition. Chichester, UK: John Wiley and Sons, Ltd., 2005.

[303] M. D. Fairchild. “The HDR Photographic Survey.” In Proceedings of the 15th Color Imaging Conference: Color Science and Engineering Systems, Technologies, and Applications, pp. 233– 238. Albuquerque, NM, 2007.

[304] H. Fairman, M. Brill, and H. Hemmendinger. “How the CIE 1931 Color-Matching Functions Were Derived from Wright-Guild Data.” Color Research and Application 22 (1997), 11–23.

[305] R. J. Farrell and J. M. Booth. Design Handbook for Imagery Interpretation Equipment, Section 3.2. Seattle: Boeing Aerospace Co., 1984.

[306] R. Fattal, D. Lischinski, and M. Werman. “Gradient Domain High Dynamic Range Compression.” ACM Transactions on Graphics 21:3 (2002), 249–256.

[307] R. Fedkiw, J. Stam, and H. W. Jensen. “Visual Simulation of Smoke.” In Proceedings of SIGGRAPH 2001, Computer Graphics Proceedings, Annual Conference Series, edited by E. Fiume, pp. 15–22. Reading, MA: Addison-Wesley, 2001.

[308] D. J. Felleman and D. C. van Essen. “Receptive Field Properties of Neurons in Area V3 of Macaque Monkey Extrastriate Cortex.” Journal of Neurophysiology 57:4 (1987), 889–920.

[309] R. Fergus, B. Singh, A. Hertzmann, S. T. Roweis, and W. T. Freeman. “Removing Camera Shake from a Single Photograph.” ACM Transactions on Graphics 25:3 (2006), 787–794.

[310] J. A. Ferwerda, S. Pattanaik, P. Shirley, and D. P. Greenberg. “A Model of Visual Adaptation for Realistic Image Synthesis.” In Proceedings of SIGGRAPH 96, Computer Graphics Proceedings, Annual Conference Series, edited by H. Rushmeier, pp. 249–258. Reading, MA: Addison-Wesley, 1996.

[311] J. A. Ferwerda, S. N. Pattanaik, P. Shirley, and D. P. Greenberg. “A Model of Visual Masking for Computer Graphics.” In Proceedings of SIGGRAPH ’97, Computer Graphics Proceedings, Annual Conference Series, pp. 143–152. Reading, MA: Addison-Wesley, 1997.

[312] J. A. Ferwerda. “Elements of Early Vision for Computer Graphics.” IEEE Computer Graphics and Applications 21:5 (2001), 22–33.

[313] D. J. Field and N. Brady. “Visual Sensitivity, Blur and the Sources of Variability in the Amplitude Spectra of Natural Scenes.” Vision Research 37:23 (1997), 3367–3383.

[314] D. J. Field. “Relations between the Statistics of Natural Images and the Response Properties of Cortical Cells.” Journal of the Optical Society of America A 4:12 (1987), 2379–2394.

[315] D. J. Field. “Scale-Invariance and Self-Similar ‘Wavelet’ Transforms: An Analysis of Natural Scenes and Mammalian Visual Systems.” In Wavelets, Fractals and Fourier Transforms, edited by M. Farge, J. C. R. Hunt, and J. C. Vassilicos, pp. 151–193. Oxford, UK: Clarendon Press, 1993.

[316] E. F. Fincham. “Defects of the Colour-Sense Mechanism as Indicated by the Accommodation Reflect.” Journal of Physiology 121 (1953), 570–580.

[317] G. D. Finlayson and S. D. Hordley. “Color Constancy at a Pixel.” Journal of the Optical Society of America A 18:2 (2001), 253–264. 

[318] G. D. Finlayson and S. S¨usstrunk. “Color Ratios and Chromatic Adaptation.” In Proceedings of IS&T CGIV, First European Conference on Color Graphics, Imaging and Vision, pp. 7–10. Springfield, VA: Society for Imaging Science and Technology, 2002.

[319] G. D. Finlayson, S. D. Hordley, and P. M. Hubel. “Color by Correlation: A Simple, Unifying Framework for Color Constancy.” IEEE Transactions on Patterns Analysis and Machine Intelligence 23:11 (2001), 1209–1221.

[320] G. D. Finlayson, S. D. Hordley, and M. S. Drew. “Removing Shadows from Images using\ Retinex.” In Proceedings IS&T Color Imaging Conference, pp. 73–79. Springfield, VA: Society for Imaging Science and Technology, 2002.

[321] A. Fiorentini and A. M. Ercoles. “Vision of Oscillating Visual Fields.” Optica Acta 4 (1957), 370.

[322] D. Fitzpatrick, K. Itoh, and I. T. Diamond. “The Laminar Organization of the Lateral Geniculate Body and the Striate Cortex in the Squirrel Monkey (Saimiri sciureus).” Journal of Neuroscience 3:4 (1983), 673–702.

[323] D. Fitzpatrick, W. M. Usrey, B. R. Schofield, and G. Einstein. “The Sublaminar Organization\ of Corticogeniculate Neurons in Layer 6 of Macaque Striate Cortex.” Visual Neuroscience 11(1994), 307–315.

[324] P. D. Floyd, D. Heald, B. Arbuckle, A. Lewis, M. Kothari, B. J. Gally, B. Cummings, B. R. Natarajan, L. Palmateer, J. Bos, D. Chang, J. Chiang, D. Chu, L.-M. Wang, E. Pao, F. Su, V. Huang, W.-J. Lin, W.-C. Tang, J.-J. Yeh, C.-C. Chan, F.-A. Shu, and Y.-D. Ju. “IMOD Display Manufacturing.” SID Symposium Digest of Technical Papers 37:1 (2006), 1980–1983.

[325] J. M. Foley and M. E. McCourt. “Visual Grating Induction.” Journal of the Optical Society of America A 2 (1985), 1220–1230.

[326] J. Foley, A. van Dam, S. Feiner, and J. Hughes. Computer Graphics Principles and Practice, Second edition. Reading, MA: Addison-Wesley, 1990.

[327] A. Ford and A. Roberts. “Colour Space Conversions.”, 1998. Available online (http://www. poynton.com/PFDs/coloureq.pdf).

[328] S. Forrest, P. Burrows, and M. Thompson. “The Dawn of Organic Electronics.” IEEE Spectrum 37:8 (2000), 29–34.

[329] J. Forrester, A. Dick, P. McMenamin, and W. Lee. The Eye: Basic Sciences in Practice. London: W. B. Saunders Company Ltd., 2001.

[330] E. R. Fossum. “CMOS Image Sensors: Electronics Camera-On-A-Chip.” IEEE Transactions on Electron Devices 44:10 (1997), 1689–1698.

[331] D. H. Foster and S. M. C. Nascimento. “Relational Color Constancy from Invariant ConeExcitation Ratios.” Proceedings of the Royal Society: Biological Sciences 257:1349 (1994), 115–121.

[332] J. Frankle and J. McCann. “Method and Apparatus for Lightness Imaging.”, 1983. U.S. patent #4,384,336.

[333] W. Fries and H. Distel. “Large Layer V1 Neurons of Monkey Striate Cortex (Meynert Cells) Project to the Superior Colliculus.” Proceedings of the Royal Society of London B, Biological Sciences 219 (1983), 53–59.

[334] W. Fries. “Pontine Projection from Striate and Prestriate Visual Cortex in the Macaque Monkey: An Anterograde Study.” Visual Neuroscience 4 (1990), 205–216.

[335] K. Fritsche. Faults in Photography. London: Focal Press, 1968.

[336] G. A. Fry and M. Alpern. “The Effect of a Peripheral Glare Source upon the Apparent Brightness of an Object.” Journal of the Optical Society of America 43:3 (1953), 189–195.

[337] G. D. Funka-Lea. “The Visual Recognition of Shadows by an Active Observer.” Ph.D. thesis, University of Pennsylvania, 1994.

[338] B. V. Funt and G. Finlayson. “Color Constant Color Indexing.” IEEE Transactions on Pattern Analysis and Machine Intelligence 17 (1995), 522–529.

[339] B. V. Funt, M. S. Drew, and J. Ho. “Color Constancy from Mutual Reflection.” International Journal of Computer Vision 6 (1991), 5–24.

[340] B. Funt, F. Ciurea, and J. McCann. “Retinex in Matlab.” In Proceedings of the IS&T/SID Eighth Color Imaging Conference: Color Science, Systems and Applications, pp. 112–121. Springfield, VA: Society for Imaging Science and Technology, 2000.

[341] M. Furuta, Y. Nishikawa, T. Inoue, and S. Kawahito. “A High-Speed, High-Sensitivity Digital CMOS Image Sensor with a Global Shutter and 12-Bit Column-Parallel Cyclic A/D Converters.” IEEE Journal of Solid-State Circuits 42:4 (2007), 766–774.

[342] D. Gabor. “A New Microscopic Principle.” Nature 161 (1948), 777–778.

[343] D. Gabor. “Wavefront Reconstruction.” In Optical and Acoustical Holography, edited by E. Camatini, pp. 15–21. New York: Plenum Press, 1972.

[344] E. R. Gaillard, L. Zheng, J. C. Merriam, and J. Dillon. “Age-Related Changes in the Absorption Characteristics of the Primate Lens.” Investigative Ophthalmology and Visual Science 41:6 (2000), 1454–1459.

[345] L. Gall. “Computer Color Matching.” In Colour 73: Second Congress International Colour Association, pp. 153–178. London: Adam Hilger, 1973.

[346] L. Ganglof, E. Minoux, K. B. K. Teo, P. Vincent, V. T. Semet, V. T. Binh, M. H. Yang, I. Y. Y. Bu, R. G. Lacerda, G. Pirio, J. P. Schnell, D. Pribat, D. G. Hasko, G. A. J. Amaratunga, W. Milne, and P. Legagneux. “Self-Aligned, Gated Arrays of Individual Nanotube and Nanowire Emitters.” Nano Letters 4 (2004), 1575–1579.

[347] M. J. Gastinger, J. J. O’Brien, J. N. B. Larsen, and D. W. Marshak. “Histamine Immunoreactive Axons in the Macaque Retina.” Investigative Ophthalmology and Visual Science 40:2 (1999), 487–495.

[348] H. Gates, R. Zehner, H. Doshi, and J. Au. “A5 Sized Electronic Paper Display for Document Viewing.” SID Symposium Digest of Technical Papers 36:1 (2005), 1214–1217.

[349] F. Gatti, A. Acquaviva, L. Benini, and B. Ricco. “Low Power Control Techniques for TFTLCD Displays.” In Proceedings of the International Conference on Compilers, Architecture, and Synthesis for Embedded Systems, pp. 218–224, 2002.

[350] I. Gauthier, M. J. Tarr, A. W. Anderson, P. Skudlarski, and J. C. Gore. “Activation of the Middle Fusiform ’Face Area’ Increases with Expertise in Recognizing Novel Objects.” Nature Neuroscience 2:6 (1999), 568–573.

[351] W. J. Geeraets and E. R. Berry. “Ocular Spectral Characteristics as Related to Hazards from Lasers and Other Sources.” American Journal of Ophthalmology 66:1 (1968), 15–20.

[352] K. Gegenfurtner and D. C. Kiper. “Color Vision.” Annual Review of Neuroscience 26 (2003), 181–206.

[353] K. R. Gegenfurtner and L. Sharpe, editors. Color Vision: From Genes to Perception. Cambridge, UK: Cambridge University Press, 1999.

[354] J. Geier, L. Sera, and L. Bernath. “Stopping the Hermann Grid Illusion by Simple Sine Distortion.” Perception, ECVP 2004 supplement 33 (2004), 53.

[355] W. S. Geisler and M. S. Banks. “Visual Performance.” In Handbook of Optics: Fundamentals, Techniques and Design, Volume 1, edited by M. Bass, E. W. van Stryland, D. R. Williams, and W. L. Wolfe, Second edition. New York: McGraw-Hill, 1995.

[356] N. George, R. J. Dolan, G. R. Fink, G. C. Baylis, C. Russell, and J. Driver. “Contrast Polarity and Face Recognition in the Human Fusiform Gyrus.” Nature Neuroscience 2:6 (1999), 574– 580.

[357] T. Gevers and H. Stokman. “Classifying Color Edges in Video into Shadow-Geometry, Highlight, or Material Transitions.” IEEE Transactions on Multimedia 5:2 (2003), 237–243.

[358] K. S. Gibson. “The Relative Visibility Function.” CIE Compte Rendu des S´eances, Sixi`eme Session, Gen`eve, 1924.

[359] J. E. Gibson and M. D. Fairchild. “Colorimetric Characterization of Three Computer Displays (LCD and CRT).” Technical report, Munsell Color Science Laboratory, Rochester, NY, 2000.

[360] K. S. Gibson and E. P. T. Tyndall. “Visibility of Radiant Energy.” Scientific Papers of the Bureau of Standards 19 (1923), 131–191.

[361] I. M. Gibson. “Visual Mechanisms in a Cone Monochromat.” Journal of Physiology 161 (1962), 10–11.

[362] A. Gilchrist and J. Cataliotti. “Anchoring of Surface Lightness with Multiple Illumination Levels.” Investigative Ophthalmology and Visual Science 35:4 (1994), 2165–2165.

[363] A. Gilchrist, C. Kossyfidis, F. Bonato, T. Agostini, J. Cataliotti, X. Li, B. Spehar, V. Annan, and E. Economou. “An Anchoring Theory of Lightness Perception.” Psychological Review 106:4 (1999), 795–834.

[364] A. L. Gilchrist. “Lightness Contrast and Failures of Constancy: A Common Explanation.” Perception and Psychophysics 43:5 (1988), 415–424.

[365] A. L. Gilchrist. “The Importance of Errors in Perception.” In Colour Perception: Mind and the Physical World, edited by R. M. D. Heyer, pp. 437–452. Oxford, UK: Oxford University Press, 2003.

[366] A. L. Gilchrist. “Lightness Perception: Seeing One Color through Another.” Current Biology 15:9 (2005), R330–R332.

[367] A. Glasser and M. C. W. Campbell. “Presbyopia and the Optical Changes in the Human Crystalline Lens with Age.” Vision Research 38 (1998), 209–229.

[368] J. Glasser. “Principles of Display Measurement and Calibration.” In Display Systems: Design and Applications, edited by L. W. MacDonald and A. C. Lowe. Chichester: John Wiley and Sons, 1997.

[369] A. S. Glassner. “How to Derive a Spectrum from an RGB Triplet.” IEEE Computer Graphics and Applications 9:4 (1989), 95–99.

[370] A. S. Glassner. Principles of Digital Image Synthesis. San Fransisco, CA: Morgan Kaufmann, 1995.

[371] A. Glassner. “Computer-Generated Solar Halos and Sun Dogs.” IEEE Computer Graphics and Applications 16:2 (1996), 77–81.

[372] A. Glassner. “Solar Halos and Sun Dogs.” IEEE Computer Graphics and Applications 16:1 (1996), 83–87.

[373] J. W. von Goethe. Zur Farbenlehre. T¨ubingen, Germany: Freies Geistesleben, 1810.

[374] N. Goldberg. Camera Technology: The Dark Side of the Lens. Boston: Academic Press, Inc., 1992.

[375] S. Gong, J. Kanicki, G. Xu, and J. Z. Z. Zhong. “A Novel Structure to Improve the Viewing Angle Characteristics of Twisted-Nematic Liquid Crystal Displays.” Japanese Journal of Applied Physics 48 (1999), 4110–4116.

[376] R. C. Gonzales and R. E. Woods. Digital Image Processing, Second edition. Upper Saddle River, NJ: Prentice-Hall, 2002. 

[377] J.-C. Gonzato and S. Marchand. “Photo-Realistic Simulation and Rendering of Halos.” In Winter School of Computer Graphics (WSCG ’01) Proceedings. Plzen, Czech Republic: University of West Bohemia, 2001.

[378] A. Gooch, S. C. Olsen, J. Tumblin, and B. Gooch. “Color2Gray: Salience-Preserving Color Removal.” ACM Transactions on Graphics 24:3 (2005), 634–639.

[379] R. H. Good, Jr and T. J. Nelson. Classical Theory of Electric and Magnetic Fields. New York: Academic Press, 1971.

[380] C. M. Goral, K. E. Torrance, D. P. Greenberg, and B. Battaile. “Modeling the Interaction of Light Between Diffuse Surfaces.” Computer Graphics (SIGGRAPH ’84 Proceedings) 18:3 (1984), 213–222.

[381] S. J. Gortler, R. Grzeszczuk, R. Szeliski, and M. F. Cohen. “The Lumigraph.” In Proceedings SIGGRAPH ’96, Computer Graphics Proceedings, Annual Conference Series, pp. 43 –54. Reading, MA: Addison-Wesley, 1996.

[382] P. Gouras. “Identification of Cone Mechanisms in Monkey Ganglion Cells.” Journal of Physiology (London) 199 (1968), 533–547.

[383] C. F. O. Graeff, G. B. Silva, F. N¨uesch, and L. Zuppiroli. “Transport and Recombination in Organic Light-Emitting Diodes Studied by Electrically Detected Magnetic Resonance.” European Physical Journal E 18 (2005), 21–28.

[384] J. Graham. “Some Topographical Connections of the Striate Cortex with Subcortical Structures in Macaca Fascicularis.” Experimental Brain Research 47 (1982), 1–14.

[385] T. Granlund, L. A. A. Petterson, M. R. Anderson, and O. Ingan¨as. “Interference Phenomenon Determines the Color in an Organic Light Emitting Diode.” Journal of Applied Physics 81:12 (1997), 8097–8104.

[386] H. Grassmann. “Zur Theorie der Farbernmischung.” Ann. Phys. Chem. 89 (1853), 69–84.

[387] R. Greenler. Rainbows, Halos, and Glories. Cambridge, UK: Cambridge University Press, 1980.

[388] R. L. Gregory and P. F. Heard. “Border Locking and the Caf´e Wall Illusion.” Perception 8:4 (1979), 365–380.

[389] R. L. Gregory and P. F. Heard. “Visual Dissociations of Movement, Position, and Stereo Depth: Some Phenomenal Phenomena.” Quarterly Journal of Experimental Psychology 35A (1983), 217–237.

[390] J. Greivenkamp. “Color Dependent Optical Filter for the Suppression of Aliasing Artifacts.” Applied Optics 29:5 (1990), 676–684.

[391] L. D. Griffin. “Optimality of the Basic Color Categories for Classification.” Journal of the Royal Society, Interface 3:6 (2006), 71–85.

[392] K. Grill-Spector and R. Malach. “The Human Visual Cortex.” Annual Review of Neuroscience 27 (2004), 647–677.

[393] K. Grill-Spector, T. Kushnir, S. Edelman, Y. Itzchak, and R. Malach. “Cue-Invariant Activation in Object-Related Areas of the Human Occipital Lobe.” Neuron 21:1 (1998), 191–202.

[394] K. Grill-Spector, T. Kushnir, T. Hendler, S. Edelman, Y. Itzchak, and R. Malach. “A Sequence of Object-Processing Stages Revealed by fMRI in the Human Occipital Lobe.” Human Brain Mapping 6:4 (1998), 316–328.

[395] S. Grossberg and E. Mingolla. “Neural Dynamics of Form Perception: Boundary Adaptation, Illusory Figures, and Neon Color Spreading.” Psychological Review 92 (1985), 173–211.

[396] S. Grossberg and J. Todorovi´c. “Neural Dynamics of 1-D and 2-D Brightness Perception: A Unified Model of Classical and Recent Phenomena.” Perception and Psychophysics 43 (1988), 241–277.

[397] F. Grum and R. J. Becherer. Optical Radiation Measurements. New York: Academic Press, Inc., 1979.

[398] C. Gu and P. Yeh. “Extended Jones Matrix Method. II.” Journal of the Optical Society of America A 10:5 (1993), 966–973.

[399] G. Gu, V. Boluvi´c, P. E. Burrows, S. R. Forrest, and M. E. Thompson. “Transparent Organic Light Emitting Devices.” Applied Physics Letters 68:19 (1996), 2606–2608.

[400] G. Gu, P. E. Burrows, S. Venkatesh, S. R. Forrest, and M. E. Thompson. “Vacuum-Deposited, Nonpolymeric Flexible Organic Light-Emitting Devices.” Optics Letters 22:3 (1997), 172–174.

[401] G. Gu, G. Parthasarathy, P. E. Burrows, P. Tian, I. G. Hill, A. Kahn, and S. R. Forrest. “Transparent Stacked Organic Light Emitting Devices. I. Design Principles and Transparent Compound Electrodes.” Journal of Applied Physics 86:8 (1999), 4067–4075.

[402] R. W. Gubbisch. “Optical Performance of the Eye.” Journal of Physiology 186 (1966), 558– 578.

[403] C. Gueymard, D. Myers, and K. Emery. “Proposed Reference Irradiance Spectra for Solar Energy Systems Testing.” Solar Energy 73:6 (2002), 443–467.

[404] C. Gueymard. “The Sun’s Total and Spectral Irradiance for Solar Energy Applications and Solar Radiation Models.” Solar Energy 76:4 (2004), 423–453.

[405] J. Guild. “The Colorimetric Properties of the Spectrum.” Phil. Trans. Roy. Soc. A 230 (1931), 149–187.

[406] R. W. Guillery and M. Colonnier. “Synaptic Patterns in the Dorsal Lateral Geniculate Nucleus of Cat and Monkey: A Brief Review.” Zeitschrift f¨ur Zellforschung und mikroskopische Anatomie 103 (1970), 90–108.

[407] B. Gulyas, C. A. Heywood, D. A. Popplewell, P. E. Roland, and A. Cowey. “Visual Form Discrimination from Color or Motion Cues: Functional Anatomy by Positron Emission Tomography.” Proceedings of the National Academy of Sciences of the United States of America 91:21 (1994), 9965–9969.

[408] M. Gur, I. Kagan, and D. M. Snodderly. “Orientation and Direction Selectivity of Neurons in V1 of Alert Monkeys: Functional Relationships and Laminar Distributions.” Cerebral Cortex 15:8 (2005), 1207–1221.

[409] C. Gutierrez and C. G. Cusick. “Area V1 in Macaque Monkeys Projects to Multiple Histochemically Defined Subdivisions of the Inferior Pulvinar Complex.” Brain Research 765 (1997), 349–356.

[410] D. Gutierrez, F. J. Seron, A. Munoz, and O. Anson. “Chasing the Green Flash: A Global Illumination Solution for Inhomogeneous Media.” In Proceedings of the Spring Conference on Computer Graphics, pp. 95–103. New York: ACM Press, 2004.

[411] D. Gutierrez, A. Munoz, O. Anson, and F. J. Seron. “Non-Linear Volume Photon Mapping.” In Rendering Techniques 2005: Eurographics Symposium on Rendering, edited by K. Bala and P. Dutr´e, pp. 291–300. Aire-la-Ville, Switzerland: Eurographics Association, 2005.

[412] C. S. Haase and G. W. Meyer. “Modeling Pigmented Materials for Realistic Image Synthesis.” ACM Transactions on Graphics 11:4 (1992), 305–335.

[413] J. Haber, M. Magnor, and H.-P. Seidel. “Physically-Based Simulation of Twilight Phenomena.” ACM Transactions on Graphics 24:4 (2005), 1353–1373.

[414] R. A. Hall and D. P. Greenberg. “A Testbed for Realistic Image Synthesis.” IEEE Computer Graphics and Applications 3:6 (1983), 10–20.

[415] R. A. Hall. Illumination and Color in Computer Generated Imagery. Monographs in Visual Communication, New York: Springer-Verlag, 1989.

[416] R. A. Hall. “Comparing Spectral Color Computation Methods.” IEEE Computer Graphics and Applications 19:4 (1999), 36–45.

[417] P. E. Hallet. “The Variations in Visual Threshold Measurement.” Journal of Physiology 202 (1969), 403–419.

[418] M. Halstead, B. Barsky, S. Klein, and R. Mandell. “Reconstructing Curved Surfaces from Specular Reflection Patterns using Spline Surface Fitting of Normals.” In Proceedings of SIGGRAPH 96, Computer Graphics Proceedings, Annual Conference Series, edited by H. Rushmeier, pp. 335–342. Reading, MA: Addison-Wesley, 1996.

[419] A. Hanazawa, H. Komatsu, and I. Murakami. “Neural Selectivity for Hue and Saturation of Colour in the Primary Visual Cortex of the Monkey.” European Journal of Neuroscience 12:5 (2000), 1753–1763.

[420] P. J. B. Hancock, R. J. Baddeley, and L. S. Smith. “The Principle Components of Natural Images.” Network 3 (1992), 61–70.

[421] J. A. Hanley and B. J. McNeil. “The Meaning and Use of the Area under the Receiver Operating Characteristic (ROC) Curve.” Radiology 143:1 (1982), 29–36.

[422] J. H. Hannay. “The Clausius-Mossotti Equation: An Alternative Derivation.” European Journal of Physics 4 (1983), 141–143.

[423] A. H˚ard and L. Sivik. “NCS — Natural Color System: A Swedish Standard for Color Notation.” Colour Research and Application 6 (1981), 129–138.

[424] A. H˚ard, L. Sivik, and G. Tonnquist. “NCS, Natural Color System — From Concepts to Research and Applications. Part I.” Colour Research and Application 21 (1996), 180–205.

[425] A. H˚ard, L. Sivik, and G. Tonnquist. “NCS, Natural Color System — From Concepts to Research and Applications. Part II.” Colour Research and Application 21 (1996), 206–220.

[426] A. C. Hardy and F. L. Wurzburg, Jr. “Color Correction in Color Printing.” Journal of the Optical Society of America 38:4 (1948), 300–307.

[427] P. Hariharan. Basics of Holography. Cambridge, UK: Cambridge University Press, 2002.

[428] H. F. Harmuth, R. N. Boules, and M. G. M. Hussain. Electromagnetic Dignals: Reflection, Focussing, Distortion, and their Practical Applications. New York: Kluwer Academic / Plenum Publishers, 1999.

[429] F. J. Harris. “On the Use of Windows for Harmonic Analysis with the Discrete Fourier Transform.” Proceedings of the IEEE 66:1 (1978), 51–84.

[430] H. K. Hartline. “The Response of Single Optic Nerve Fibers of the Vertebrate Eye to Illumination of the Retina.” American Journal of Physiology 121 (1938), 400–415.

[431] E. I. Haskal, M. Buechel, J. F. Dijksman, P. C. Duineveld, E. A. Meulenkamp, C. A. H. A. Mutsaers, A. Sempel, P. Snijder, S. I. E. Vulto, P. van de Weijer, and S. H. P. M. de Winter. “Ink jet Printing of Passive Matrix Polymer Light-Emitting Displays.” SID Symposium Digest of Technical Papers 33:1 (2002), 776–779.

[432] U. Hasson, M. Harel, I. Levy, and R. Malach. “Large-Scale Mirror-Symmetry Organization of Human Occipito-Temporal Object Areas.” Neuron 37:6 (2003), 1027–1041.

[433] J. A. van Hateren and A. van der Schaaf. “Independent Component Filters of Natural Images Compared with Simple Cells in Primary Visual Cortex.” Proceedings of the Royal Society of London B 265 (1998), 359–366.

[434] J. H. van Hateren. “A Cellular and Molecular Model of Response Kinetics and Adaptation in Primate Cones and Horizontal Cells.” Journal of Vision 5 (2005), 331–347.

[435] J. H. van Hateren. “Encoding of High Dynamic Range Video with a Model of Human Cones.” ACM Transactions on Graphics 25:4 (2006), 1380–1399.

[436] W. Hauser. Introduction to the Principles of Electromagnetism. Reading: Addison-Wesley, 1971.

[437] V. Havran. “Heuristic Ray Shooting Algorithms.” Ph.D. thesis, Department of Computer Science and Engineering, Faculty of Electrical Engineering, Czech Technical University in Prague, 2000.

[438] M. J. Hawken, A. J. Parker, and J. S. Lund. “Laminar Organization and Contrast Sensitivity of Direction-Selective Cells in the Striate Cortex of the Old World Monkey.” Journal of Neuroscience 8:10 (1988), 3541–3548.

[439] G. E. Healey and R. Kondepudy. “Radiometric CCD Camera Calibration and Noise Estimation.” IEEE Transactions on Pattern Analysis and Machine Intelligence 16:3 (1994), 267–276.

[440] G. Healey and D. Slater. “Global Color Constancy: Recognition of Objects by Use of Illumination-Invariant Properties of Color Distributions.” Journal of the Optical Society of America A 11:11 (1994), 3003–3010.

[441] G. Healey. “Estimating Spectral Reflectance using Highlights.” Image Vision Computing 9:5 (1991), 333–337.

[442] G. Healey. “Segmenting Images using Normalized Color.” IEEE Transactions on Systems, Man, and Cybernetics 22 (1992), 64–73.

[443] S. Hecht and J. Mandelbaum. “The Relation between Vitamin A and Dark Adaptation.” Journal of the American Medical Association 112 (1939), 1910–1916.

[444] S. Hecht, C. Haig, and G. Wald. “The Dark Adaptation of Retinal Fields of Different Size and Location.” Journal of General Physiology 19:2 (1935), 321–327.

[445] S. Hecht, C. Haig, and A. M. Chase. “The Influence of Light Adaptation on Subsequent Dark Adaptation of the Eye.” Journal of General Physiology 20:6 (1937), 831–850.

[446] S. Hecht, S. Schlaer, and M. H. Pirenne. “Energy, Quanta and Vision.” Journal of General Physiology 25 (1942), 819–840.

[447] E. Hecht. Optics, Fourth edition. San Francisco: Addison-Wesley, 2002.

[448] R. Heckaman. “Talking about Color...Brilliance.” Color Research and Application 30 (2005), 250–151.

[449] E. R. Heider and D. C. Olivier. “The Structure of the Color Space in Naming and Memory for Two Languages.” Cognitive Psychology 3 (1972), 337–354.

[450] E. Heider. “Universals in Color Naming and Memory.” Journal of Experimental Psychology 93:1 (1972), 10–20.

[451] W. Helfrich and W. G. Schneider. “Recombination Radiation in Anthracene Crystals.” Physical Review Letters 14:7 (1965), 229–231.

[452] W. Helfrich and W. G. Schneider. “Transients of vVolume-cControlled Current and of Recombination Radiation in Anthracene.” The Journal of Chemical Physics 44:8 (1966), 2902–2909.

[453] H. L. F. von Helmholtz. Handbuch der physiologischen Optik. Leipzig, Germany: Leopold Voss, 1867.

[454] H. Helson and D. B. Judd. “An Experimental and Theoretical Study of Changes in Surface Colors under Changing Illuminations.” Psychological Bulletin 33 (1936), 740–741.

[455] H. Helson. “Fundamental Problmes in Color vision I. The Principle Governing Changes in Hue, Saturation, and Lightness of Non-Selective Samples in Chromatic Illuminantion.” Journal\ of Experimental Psychology 23 (1938), 439–477.

[456] H. Helson. Adaptation-Level Theory. New York: Harper and Row, 1964.

[457] S. H. C. Hendry and D. J. Calkins. “Neuronal Chemistry and Functional Organization in the Primate Visual System.” Trends in Neuroscience 21:8 (1998), 344–349.

[458] S. H. C. Hendry and R. C. Reid. “The Koniocellular Pathway in Primate Vision.” Annual Review of Neuroscience 23 (2000), 127–153.

[459] S. H. Hendry and T. Yoshioka. “A Neurochemically Distinct Third Channel in the Macaque Dorsal Lateral Geniculate Nucleus.” Science 264 (1994), 575–577.

[460] L. Henyey and J. Greenstein. “Diffuse Radiation in the Galaxy.” Astrophysics Journal 93 (1941), 70–83.

[461] E. Hering. “Zur Lehre vom Lichtsinne. IV. ¨ Uber die sogenannte Intensit¨at der Lichtempfindungund ¨uber die Empfindung des Schwarzen.” Sitzungsberichte / Akademie der Wissenschaften in Wien, Mathematisch-Naturwissenschaftliche Klasse Abteilung III, Anatomie und Physiology des Menschen und der Tiere sowie theoretische Medizin 69 (1874), 85–104.

[462] E. Hering. Outlines of a Theory of the Light Sense (Translation from German: Zur Lehre vom Lichtsinne, 1878). Cambridge, MA: Harvard University Press, 1920.

[463] L. Hermann. “Eine Erscheinung simultanen Contrastes.” Pfl¨ugers Archiv f¨ur die gesamte Physiologie des Menschen und Tiere 3 (1870), 13–15.

[464] E. W. Herold. “History and Development of the Color Picture Tube.” Proceedings of the Society for Information Display 15:4 (1974), 141–149.

[465] R. D. Hersch, F. Collaud, and P. Emmel. “Reproducing Color Images with Embedded Metallic Patterns.” ACM Transactions on Graphics 22:3 (2003), 427–434.

[466] M. Herzberger. Modern Geometrical Optics. New York: Interscience, 1958.

[467] P. G. Herzog. “Analytical Color Gamut Representations.” Journal for Imaging Science and Technology 40 (1996), 516–521.

[468] P. G. Herzog. “Further Developments of the Analytical Color Gamut Representations.” InProceedings of the SPIE 3300, pp. 118–128. Bellingham, WA: SPIE, 1998.

[469] M. Hess and M. Wiegner. “COP: A Data Library of Optical Properties of Hexagonal IceCrystals.” Applied Optics 33 (1994), 7740–7749.

[470] S. Hesselgren. Hesselgrens f¨argatla med kortfattad f¨argl¨ara. Stockholm, Sweden: T Palmer,AB, 1952.

[471] D. Hideaki, H. Y. K. Yukio, and S. Masataka. “Image Data Processing Apparatus for Processing Combined Image Signals in order to Extend Dynamic Range.” In Image Sensor. 8223491, Japanese Patent, 1996.

[472] B. M. Hill. “A Simple General Approach to Inference about the Tail of a Distribution.” The Annals of Statistics 3:5 (1975), 1163–1174.

[473] J. W. Hittorf. “ Uber die Electricit¨atsleitung der Gase. Erste Mitteilungen.” Annalen der Physikund Chemie 136 (1869), 1–31, 197–234.

[474] J. Ho, B. V. Funt, and M. S. Drew. “Separating a Color Signal into Illumination and Surface Reflectance Components: Theory and Applications.” IEEE Transactions on Patterns Analysis and Machine Intelligence 12:10 (1990), 966–977.

[475] B. Hoefflinger, editor. High-Dynamic-Range (HDR) Vision: Microelectronics, Image Processing, Computer Graphics. Springer Series in Advanced Microelectronics, Berlin: Springer, 2007.

[476] H. Hofer, B. Singer, and D. R. Williams. “Different Sensations from Cones with the Same Photopigment.” Journal of Vision 5 (2005), 444–454.

[477] A. Hohmann and C. von der Malsburg. “McCollough Effect and Eye Optics.” Perception 7 (1978), 551–555.

[478] G. Hollemann, B. Braun, P. Heist, J. Symanowski, U. Krause, J. Kr¨anert, and C. Deter. “High Power Laser Projection Displays.” In Proceedings of the SPIE 4294, edited by M. H. Wu, pp. 36–46. Bellingham, WA: SPIE, 2001.

[479] N. Holonyak Jr. and S. F. Bevaqua. “Coherent (Visible) Light Emission from GaAs1 Junctions.” Applied Physics Letters 1 (1962), 82–83.

[480] G. Hong, M. R. Luo, and P. A. Rhodes. “A Study of Digital Camera Colorimetric Characterization Based on Polynomial Modeling.” Color Research and Application 26:1 (2001), 76–84.

[481] Q. Hong, T. X. Wu, X. Zhu, R. Lu, and S.-T. Wu. “Extraordinarily High-Contrast and WideView Liquid-Crystal Displays.” Applied Physics Letters 86 (2005), 121107–1–121107–3.

[482] F. M. Honrubia and J. H. Elliott. “Efferent Innervation of the Retina I: Morphologic Study of the Human Retina.” Archives of Ophthalmology 80 (1968), 98–103.

[483] D. C. Hood and D. G. Birch. “A Quantitative Measure of the Electrical Activity of Human Rod Photoreceptors using Electroretinography.” Visual Neuroscience 5 (1990), 379–387.

[484] D. C. Hood and M. A. Finkelstein. “Comparison of Changes in Sensitivity and Sensation: Implications for the Response-Intensity Function of the Human Photopic System.” Journal of Experimental Psychology: Human Perceptual Performance 5:3 (1979), 391–405.

[485] D. C. Hood, M. A. Finkelstein, and E. Buckingham. “Psychophysical Tests of Models of the Response Function.” Vision Research 19:4 (1979), 401–406.

[486] S. J. Hook. “ASTER Spectral Library.”, 1999. Available online (http://speclib.jpl.nasa.gov).

[487] S. D. Hordley and G. D. Finlayson. “Reevaluation of Color Constancy Algorithm Performance.” Journal of the Optical Society of America A 23:5 (2006), 1008–1020.

[488] B. K. P. Horn. Robot Vision. Cambridge, MA: MIT Press, 1986.

[489] L. J. Hornbeck. “From Cathode Rays to Digital Micromirrors: A History of Electronic Projection Display Technology.” Texas Instruments Technical Journal 15:3 (1998), 7–46.

[490] J. C. Horton and L. C. Sincich. “How Specific is V1 Input to V2 Thin Stripes?” Society for Neuroscience Abstracts 34 (2004), 18.1.

[491] G. D. Horwitz, E. J. Chichilnisky, and T. D. Albright. “Spatial Opponency and Color Tuning Dynamics in Macaque V1.” Society for Neuroscience Abstracts 34 (2004), 370.9.

[492] C. Hou, M. W. Pettet, V. Sampath, T. R. Candy, and A. M. Norcia. “Development of the Spatial Organization and Dynamics of Lateral Interactions in the Human Visual System.” Journal of Neuroscience 23:25 (2003), 8630–8640.

[493] D. H. Hubel and T. N. Wiesel. “Receptive Fields, Binocular Interaction and Functional Architecture in the Cat’s Visual Cortex.” Journal of Physiology 160 (1962), 106–154.

[494] D. H. Hubel and T. N. Wiesel. “Ferrier Lecture: Functional Architecture of Macaque Monkey Visual Cortex.” Proceedings of the Royal Society of London B 198:1130 (1977), 1–59.

[495] P. M. Hubel, J. Holm, and G. Finlayson. “Illuminant Estimation and Color Correction.” In Color Imaging, pp. 73–95. New York: Wiley, 1999.

[496] D. H. Hubel. Eye, Brain, and Vision, Reprint edition, see also http://neuro.med.harvard.edu/site/dh/ edition. New York: W. H. Freeman and Company, 1995.

[497] A. J. Hughes. “Controlled Illumination for Birefringent Colour LCDs.” Displays 8:3 (1987), 139–141.

[498] A. C. Huk, D. Ress, and D. J. Heeger. “Neuronal Basis of the Motion Aftereffect Reconsidered.” Neuron 32:1 (2001), 161–172.

[499] H. C. van de Hulst. Light Scattering by Small Particles. Mineola, NY: Dover Publications, 1981.

[500] P.-C. Hung and R. S. Berns. “Determination of Constant Hue Loci for a CRT Gamut and Their Predictions using Color Appearance Spaces.” Color Research and Application 20 (1995), 285–295.

[501] P.-C. Hung. “Colorimetric Calibration for Scanners and Media.” In Proceedings of the SPIE 1498, edited by W. Chang and J. R. Milch, pp. 164–174. Bellingham, WA: SPIE, 1991.

[502] P.-C. Hung. “Colorimetric Calibration in Electronic Imaging Devices using a Look-Up Table Model and Interpolations.” Journal of Electronic Imaging 2 (1993), 53–61.

[503] P.-C. Hung. “Color Theory and its Application to Digital Still Cameras.” In Image Sensors and Signal Processing for Digital Still Cameras, edited by J. Nakamura, pp. 205–221. Boca Raton, FL: Taylor and Francis, 2006.

[504] R. W. G. Hunt. “Light and Dark Adaptation and the Perception of Color.” Journal of the Optical Society of America 42 (1952), 190–199.

[505] R. W. G. Hunt. “The Strange Journey from Retina to Brain.” Journal of the Royal Television Society 11 (1967), 220–229.

[506] R. W. G. Hunt. “Hue Shifts in Unrelated and Related Colors.” Color Research and Application 14 (1989), 235–239.

[507] R. W. G. Hunt. “Why is Black and White So Important in Colour?” In Colour Imaging: Vision and Technology, edited by L. W. MacDonald and M. R. Luo, pp. 3–15. Chichester, UK: John Wiley and Sons, Ltd., 1999.

[508] R. W. G. Hunt. “Saturation: Superfluous or Superior?” In IS&T/SID 9th Color Imaging Conference, pp. 1–5. Springfield, VA: Society for Imaging Science and Technology, 2001.

[509] R. W. G. Hunt. The Reproduction of Colour, Sixth edition. Chichester, UK: John Wiley and Sons Ltd., 2004.

[510] J.-M. Hup´e, A. C. James, B. R. Payne, S. G. Lomber, P. Girard, and J. Bullier. “Cortical Feedback Improves Discrimination between Figure and Ground.” Nature 394:6695 (1998), 784– 787.

[511] J.-M. Hup´e, A. C. James, P. Girard, and J. Bullier. “Response Modulations by Static Texture Surround in Area V1 of the Macaque Monkey Do Not Depend on Feedback Connections from V2.” Journal of Neurophysiology 85:1 (2001), 146–163.

[512] B. S. Hur and M. G. Kang. “High Definition Color Interpolation Scheme for Progressive Scan CCD Image Sensor.” IEEE Transactions on Consumer Electronics 47:1 (2001), 179–186.

[513] A. Hurlbert. “Formal Connections between Lightness Algorithms.” Journal of the Optical Society of America A 3 (1986), 1684–1693.

[514] J. Hurri, A. Hyv¨arinen, and E. Oja. “Wavelets and Natural Image Statistics.” In Proceedings of the 10th Scandinavian Conference on Image Analysis, pp. 13–18. International Association for Pattern Recognition, 1997.

[515] L. M. Hurvich and D. Jameson. “Some Quantitative Aspects of Opponent-Colors Theory. IV. A Psychological Color Specification System.” Journal of the Optical Society of America 46:6 (1956), 416–421.

[516] L. M. Hurvich and D. Jameson. “The Opponent Process Theory of Color Vision.” Psychological Review 64 (1957), 384–404.

[517] L. M. Hurvich. Color Vision. Sunderland, MA: Sinauer Associates, 1981.

[518] J. B. Hutchings. “Colour and Appearance in Nature, Part 1.” Colour Research and Application 11 (1986), 107–111.

[519] J. B. Hutchings. “Color in Anthopology and Folklore.” In Color for Science, Art and Technology, edited by K. Nassau. Amsterdam: Elsevier Science B.V., 1998.

[520] J. B. Hutchings. “Color in Plants, Animals and Man.” In Color for Science, Art and Technology, edited by K. Nassau. Amsterdam: Elsevier Science B.V., 1998.

[521] J. Hynecek. “CDS Noise Reduction of Partially Reset Charge-Detection Nodes.” IEEE Transactions on Circuits and Systems — I: Fundamental Theory and Applications 49:3 (2002), 276– 280.

[522] A. Hyv¨arinen. “Survey on Independent Components Analysis.” Neural Computing Surveys 2 (1999), 94–128.

[523] ICC. “Image Technology Colour Management - Architecture, Profile Format, and Data Structure.” Technical Report ICC.1:2004-10, International Color Consortium, 2004. Available online (http://www.color.org).

[524] IEC. “Part 2-1: Colour Management - Default RGB Colour Space - sRGB.” Technical Report 61966, International Electrotechnical Commission, Geneva, Switzerland, 1999.

[525] M. Ikebe and K. Saito. “A Wide-Dynamic-Range Compression Image Sensor with NegativeFeedback Resetting.” IEEE Sensors Journal 7:5 (2007), 897–904.

[526] E. Ikeda. “Image Data Processing Apparatus for Processing Combined Image Signals in order to Extend Dynamic Range.” In 5801773, United States Patent, 2003.

[527] Q. M. T. Inc. “Interferometric Modulator (IMOD) Technology Overview.”, 2007. White paper.

[528] M. Inui. “Fast Algorithm for Computing Color Gamuts.” Color Research and Application 18 (1993), 341–348.

[529] P. Irawan, J. A. Ferwerda, and S. R. Marshner. “Perceptually Based Tone Mapping of High Dynamic Range Image Streams.” In Eurographics Symposium on Rendering, pp. 231–242. Aire-la-Ville, Switzerland: Eurographics Association, 2005.

[530] S. Ishida, Y. Yamashita, T. Matsuishi, M. Ohshima, T. Ohshima, K. Kato, and H. Maeda. “Photosensitive Sseizures Provoked while Viewing ”Pocket Monster”, a Made-for-Television Animation Program in Japan.” Epilepsia 39 (1998), 1340–1344.

[531] S. Ishihara. Tests for Colour-Blindness. Tokyo: Hongo Harukicho, 1917.

[532] M. F. Iskander. Electromagnetic Fields and Waves. Upper Saddle River, NJ: Prentice Hall, 1992.

[533] ISO. “Graphic technology - Spectral measurement and colorimetric computation for graphicarts images.” Technical Report ISO 13655:1996, International Organization for Standardization, 1996.

[534] ISO. “Photography – Digital Still Cameras – Determination of Exposure Index, ISO Speed Ratings, Standard Output Sensitivity, and Recommended Exposure Index.” 12232:2006.

[535] S. Itoh and M. Tanaka. “Current Status of Field-Emission Displays.” Proceedings of the IEEE 90:4 (2002), 514–520.

[536] ITU-R. “Parameter Values for HDTV Standards for Production and International Programme Exchange,.” Technical report, BT.709-2, International Telecommunication Union, Geneva, Switzerland, 1995.

[537] A. V. Ivashchenko. Dichroic Dyes for Liquid Crystal Displays. Boca Raton, Florida: CRC Press, 1994.

[538] H. Ives. “The Transformation of Color-Mixture Equations from One System to Another.” Journal of Franklin Inst. 16 (1915), 673–701.

[539] H. E. Ives. “The Resolution of Mixed Colors by Differential Visual Activity.” Philosophical Magazine 35 (1918), 413–421.

[540] J. Iwao. “Errors in Color Calculations Due to Fluorescence when using the Neugebauer Equations.” In Proceedings of the Technical Association of the Graphical Arts, pp. 254–266. Sewickley, PA: Technical Association of the Graphic Arts, 1973. 

[541] D. Jack`el and B. Walter. “Modeling and Rendering of the Atmosphere using Mie Scattering.” Computer Graphics Forum 16:4 (1997), 201–210.

[542] D. Jack`el and B. Walter. “Simulation and Visualization of Halos.” In Proceedings of ANIGRAPH ’97, 1997.

[543] A. K. Jain. Fundamentals of Digital Image Processing. Upper Saddle River, NJ: Prentice-Hall, 1989.

[544] D. Jameson and L. M. Hurvich. “Color Adaptation: Sensitivity, Contrast and After-Images.” In Handbook of Sensory Physiology, VII/4, edited by D. Jameson and L. M. Hurvich, VII/4, pp. 568–581. Berlin: Springer-Verlag, 1972.

[545] T. H. Jamieson. “Thin-Lens Theory of Zoom Systems.” Optica Acta 17:8 (1970), 565–584.

[546] J. Janesick, T. Elliott, S. Collins, M. Blouke, and J. Freeman. “Scientific Charge-Coupled Devices.” Optical Engineering 26:8 (1987), 692–715.

[547] J.-S. Jang and B. Javidi. “Improvement of Viewing Angle in Integral Imaging by Use of Moving Lenslet Arrays with Low Fill Factor.” Applied Optics 42:11 (2003), 1996–2002.

[548] H. W. Jensen, J. Legakis, and J. Dorsey. “Rendering of Wet Materials.” In Proceedings of the 10th Eurographics Symposium on Rendering, edited by D. Lischinski and G. W. Larson, pp. 273–281. Vienna: Springer-Verlag, 1999.

[549] H. W. Jensen. Realistic Image Synthesis using Photon Mapping. Natick, MA: A K Peters, 2001.

[550] E. Jin, X. Feng, and J. Newell. “The Development of a Color Visual Difference Model (CVDM).” In IS&T PICS Conference, pp. 154–158. Springfield, VA: Society for Imaging Science and Technology, 1998.

[551] L. Jing and K. Urahama. “Image Recoloring by Eigenvector Mapping.” In Proceedings of the International Workshop on Advanced Image Technology, 2006.

[552] D. J. Jobson, Z. Rahman, and G. A. Woodell. “Retinex Image Processing: Improved Fidelity to Direct Visual Observation.” In Proceedings of the IS&T Fourth Color Imaging Conference: Color Science, Systems, and Applications, pp. 124–125. Springfield, VA: Society for Imaging Science and Technology, 1995.

[553] D. J. Jobson, Z. Rahman, and G. A. Woodell. “A Multi-Scale Retinex for Bridging the Gap between Color Images and Human Observation of Scenes.” IEEE Transactions on Image Processing 6:7 (1997), 965–976.

[554] T. Johansson. F¨arg. Stockholm, Sweden: Lindfors Bokf¨orlag, AB, 1937.

[555] G. M. Johnson and M. D. Fairchild. “A Top Down Description of S-CIELAB and CIEDE2000.” Color Research and Application 28 (2003), 425–435.

[556] G. M. Johnson and F. Mark D. “The Effect of Opponent Noise on Image Quality.” In SPIE Proceedings 5668 (Electronic Imaging Conference), pp. 82–89. Bellingham, WA: SPIE, 2005.

[557] P. D. Jones and D. H. Holding. “Extremely Long-Term Persistence of the McCollough Effect.” Journal of Experimental Psychology 1:4 (1975), 323–327.

[558] D. B. Judd and G. Wyszecki. Color in business, science and industry, Third edition. New York: Wiley Interscience, 1975.

[559] D. B. Judd, D. L. MacAdam, and G. Wyszecki. “Spectral Distribution of Typical Light as a Function of Correlated Color Temperature.” Journal of the Optical Society of America 54:8 (1964), 1031–1040.

[560] D. B. Judd. “Chromaticity Sensibility to Stimulus Differences.” Journal of the Optical Society of America 22 (1932), 72–108.

[561] D. B. Judd. “Sensibility to Color-Temperature Change as a Function of Temperature.” Journal of the Optical Society of America 23 (1933), 7.

[562] T. B. Jung, J. C. Kim, and S. H. Lee. “Wide-Viewing-Angle Transflective Display Associated with a Fring-Field Driven Homogeneously Aligned Nematic Liquid Crystal Display.” Japanese Journal of Applied Physics 42:5A (2003), L464–L467.

[563] J. H. Kaas and D. C. Lyon. “Visual Cortex Organization in Primates: Theories of V3 and Adjoining Visual Areas.” Progress in Brain Research 134 (2001), 285–295.

[564] J. H. Kaas, M. F. Huerta, J. T. Weber, and J. K. Harting. “Patterns of Retinal Terminations and Laminar Organization of the Lateral Geniculate Nucleus of Primates.” Journal of Comparative Neurology 182:3 (1978), 517–554.

[565] F. Kainz, R. Bogart, and D. Hess. “The OpenEXR Image File Format.” In SIGGRAPH ’03 Technical Sketches, 2003. See also: http://www.openexr.com.

[566] P. K. Kaiser and R. M. Boynton, editors. Human Color Vision, Second edition. Washington, DC: Optical Society of America, 1996.

[567] P. K. Kaiser. “Photopic and Mesopic Photometry: Yesterday, Today, and Tomorrow.” In Golden Jubilee of Colour in the CIE : Proceedings of a Symposium held by The Colour Group (Great Britain) at Imperial College, London. Bradford, UK: The Society of Dyers and Colourists, 1981.

[568] J. T. Kajiya. “The Rendering Equation.” Computer Graphics (SIGGRAPH ’86 Proceedings) 20:4 (1986), 143–150.

[569] K. Kakinuma. “Technology of Wide Color Gamut Backlight with Light-Emitting Diode for Liquid Crystal Display Television.” Japanese Journal of Applied Physics 45:5B (2006), 4330– 4334.

[570] M. Kalloniatis and C. Luu. “Psychophysics of Vision.”, 2006. http://webvision.med.utah.edu/KallSpatial.html.

[571] E. Kaneko. Liquid crystal TV displays: Principles and applications of liquid crystal displays. Tokyo: KTK Scientific Publishers, 1987. In co-publication with D Reidel Publishing Company, Dordrecht, Holland.

[572] H. R. Kang and P. G. Anderson. “Neural Network Applications to the Colour Scanner and Printer Calibrations.” Journal of Electronic Imaging 1 (1992), 125–134.

[573] S. B. Kang, M. Uttendaele, S. Winder, and R. Szeliski. “High Dynamic Range Video.” ACM Transactions on Graphics 22:3 (2003), 319–325.

[574] H. R. Kang. “Colour Scanner Calibration.” Journal of Imaging Science and Technology 36 (1992), 162–170.

[575] H. R. Kang. Color Technology for Electronic Imaging Devices. Belingham, Washington: SPIE Optical Engineering Press, 1997.

[576] H. R. Kang. “Computational Accuracy of RGB Encoding Standards.” In IS&Ts NIP16: International Conference on Digital Printing Technologies, pp. 661–664. Springfield, VA: Society for Imaging Science and Technology, 2000.

[577] H. R. Kang. Computational Color Technology. Bellingham, WA: SPIE Press, 2006.

[578] R. Kanthack. Tables of Refractive Indices, II. London: Hilger, 1921.

[579] K. Karhunen. “Uber lineare Methoden in der Warscheinlichkeitsrechnung.” Annales Academiae Scientiarium Fennicae 37 (1947), 3–79.

[580] J. E. Kasper and S. A. Feller. The Complete Book of Holograms: How They Work and How to Make Them. New York: John Wiley and Sons, Inc., 1987.

[581] N. Katoh and K. Nakabayashi. “Applying Mixed Adaptation to Various Chromatic Adaptation Transformation (CAT) Models.” In IS&T PICS Conference, pp. 299–305. Springfield, VA: Society for Imaging Science and Technology, 2001.

[582] J. Kautz and M. McCool. “Interactive Rendering with Arbitrary BRDFs using Separable Approximations.” In Proceedings of the 10th Eurographics Symposium on Rendering, edited by D. Lischinski and G. W. Larson, pp. 247–260. Vienna: Springer-Verlag, 1999.

[583] R. Kawakami, J. Takamatsu, and K. Ikeuchi. “Color Constancy from Blackbody Illumination.” Journal of the Optical Society of America A. (to appear), 2007.

[584] P. Kay and C. K. McDaniel. “The Linguistic Significance of the Meanings of Basic Color Terms.” Language 54:3 (1978), 610–646.

[585] E. A. Khan and E. Reinhard. “Evaluation of Color Spaces for Edge Classification in Outdoor Scenes.” In IEEE International Conference on Image Processing, pp. 952–955. Washington, DC: IEEE Press, 2005.

[586] E. A. Khan, A. O. Aky¨uz, and E. Reinhard. “Ghost Removal in High Dynamic Range Images.” In IEEE International Conference on Image Processing, pp. 2005–2008. Washington, DC: IEEE Press, 2006.

[587] E. A. Khan, E. Reinhard, R. Fleming, and H. B¨ulthoff. “Image-Based Material Editing.” ACM Transactions on Graphics 25:3 (2006), 654–663.

[588] J.-H. Kim and J. P. Allebach. “Color Filters for CRT-Based Rear Projection Television.” IEEE Transactions on Consumer Electronics 42:4 (1996), 1050–1054.

[589] H. Kim, J.-Y. Kim, S. H. Hwang, I.-C. Park, and C.-M. Kyung. “Digital Signal Processor with Efficient RGB Interpolation and Histogram Accumulation.” IEEE Transactions on Consumer Electronics 44:4 (1998), 1389–1395.

[590] R. Kimmel. “Demosaicing: Image Reconstruction from Color CCD Samples.” IEEE Transactions on Image Processing 8:9 (1999), 1221–1228.

[591] G. Kindlmann, E. Reinhard, and S. Creem. “Face-Based Luminance Matching for Perceptual Colormap Generation.” In Proceedings of IEEE Visualization, pp. 309–406. Washington, DC: IEEE, 2002.

[592] D. C. Kiper, J. B. Levitt, and K. R. Gegenfurtner. “Chromatic Signals in Extrastriate Areas V2 and V3.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. Sharpe, pp. 249–268. Cambridge, UK: Cambridge University Press, 1999.

[593] A. Kitaoka, J. Gyoba, H. Kawabata, and K. Sakurai. “Two Competing Mechanisms Underlying Neon Color Spreading, Visual Phantoms and Grating Induction.” Vision Research 41:18 (2001), 2347–2354.

[594] J. Kleinschmidt and J. E. Dowling. “Intracellular Recordings from Gecko Photoreceptors during Light and Dark Adaptation.” Journal of General Physiology 66:5 (1975), 617–648.

[595] G. J. Klinker, S. A. Shafer, and T. Kanade. “Image Segmentation and Reflectance Analysis through Color.” In Proceedings of the SPIE 937 (Application of Artificial Intelligence VI), pp. 229–244. Bellingham, WA: SPIE, 1988.

[596] G. J. Klinker, S. A. Shafer, and T. Kanade. “A Physical Approach to Color Image Understanding.” International Journal of Computer Vision 4:1 (1990), 7–38.

[597] K. Klug, N. Tiv, Y. Tsukamoto, P. Sterling, and S. Schein. “Blue Cones Contact OFF-Midget Bipolar Cells.” Society for Neuroscience Abstracts 18 (1992), 838.

[598] K. Klug, Y. Tsukamoto, P. Sterling, and S. Schein. “Blue Cone OFF-Midget Ganglion Cells in Macaque.” Investigative Ophthalmology and Visual Science, Supplement 34 (1993), 986–986.

[599] R. Knight, S. L. Buck, G. A. Fowler, and A. Nguyen. “Rods Affect S-Cone Discrimination on the Farnsworth-Munsell 100-Hue Test.” Vision Research 38:21 (1998), 3477–3481.

[600] W. E. Kock. Lasers and Holography, Second edition. New York: Dover Publications, Inc, 1981.

[601] J. J. Koenderink, A. van Doorn, and M. Stavridi. “Bidirectional Reflection Distribution Function Expressed in Terms of Surface Scattering Modes.” In European Conference on Computer Vision, pp. 28–39. London: Springer-Verlag, 1996.

[602] K. Koffka. Principles of Gestallt Psychology. New York: Harcourt, Brace, and World, 1935.

[603] A. J. F. Kok. “Ray Tracing and Radiosity Algorithms for Photorealistic Image Synthesis.” Ph.D. thesis, Delft University of Technology, 1994.

[604] H. Kolb and L. Dekorver. “Midget Ganglion Cells of the Parafovea of the Human Retina: A Study by Electron Microscopy and Serial Section Reconstructions.” Journal of Comparative Neurology 303:4 (1991), 617–636.

[605] H. Kolb and E. V. Famiglietti. “Rod and Cone Pathways in the Inner Plexiform Layer of the Cat Retina.” Science 186 (1974), 47–49.

[606] H. Kolb, K. A. Linberg, and S. K. Fisher. “Neurons of the Human Retina: A Golgi Study.” Journal of Comparative Neurology 318:2 (1992), 147–187.

[607] H. Kolb. “The Inner Plexiform Layer in the Retina of the Cat: Electron Microscopic Observations.” Journal of Neurocytology 8 (1979), 295–329.

[608] H. Kolb. “Anatomical Pathways for Color Vision in the Human Retina.” Visual Neuroscience 7 (1991), 61–74.

[609] H. Kolb. “How the Retina Works.” American Scientist 91 (2003), 28–35.

[610] A. K¨onig. “Uber den Menschlichen Sehpurpur und seine Bedeutung f¨ur das Sehen.” Sitzungsberichte der Akademie der Wissenschaften, Berlin, pp. 577–598.

[611] A. K¨onig. Gesammelte Abhandlungen zur Physiologischen Optik. Leipzig: Barth, 1903.

[612] N. Kouyama and D. W. Marshak. “Bipolar Cells Specific for Blue Cones in the Macaque Retina.” Journal of Neuroscience 12:4 (1992), 1233–1252.

[613] T. Koyama. “Optics in Digital Still Cameras.” In Image Sensors and Signal Processing for Digital Still Cameras, edited by J. Nakamura, pp. 21–51. Boca Raton, FL: Taylor and Francis, 2006.

[614] J. Krauskopf, Q. Zaidi, and M. B. Mandler. “Mechanisms of Simultaneous Color Induction.” Journal of the Optical Society of America A 3:10 (1986), 1752–1757.

[615] J. Krauskopf. “Light Distribution in Human Retinal Images.” Journal of the Optical Society of America 52:9 (1962), 1046–1050.

[616] J. Krauskopf. “Effect of Retinal Stabilization on the Appearance of Heterochromatic Targets.” Journal of the Optical Society of America 53 (1963), 741–744.

[617] Y. A. Kravtsov and Y. I. Orlov. Geometrical Optics of Inhomogeneous Media. Springer Series on Wave Phenomena, Berlin: Springer-Verlag, 1990.

[618] G. Krawczyk, R. Mantiuk, K. Myszkowski, and H.-P. Seidel. “Lightness Perception Inspired Tone Mapping.” In APGV ’04: Proceedings of the 1st Symposium on Applied Perception in Graphics and Visualization, pp. 172–172. New York: ACM Press, 2004.

[619] G. Krawczyk, K. Myszkowski, and H.-P. Seidel. “Lightness Perception in Tone Reproduction for High Dynamic Range Images.” Computer Graphics Forum 24:3 (2005), 635–645.

[620] G. Krawczyk, K. Myszkowski, and H.-P. Seidel. “Computational Model of Lightness Perception in High Dynamic Range Imaging.” In Proceedings of SPIE 6057 (Human Vision and Electronic Imaging). Bellingham, WA: SPIE, 2006.

[621] W. Kress and M. Stevens. “Derivation of 3-Dimensional Gamut Descriptors for Graphic Arts Output Devices.” In Proceedings of the Technical Association of Graphical Arts, pp. 199–214. Sewickley, PA: Technical Assocation of the Graphics Arts, 1994.

[622] J. von Kries. “Die Gesichtsempfindungen.” In Handbuch der Physiologie des Menschen, edited by W. Nagel, pp. 109–282. Braunschweig, Germany: Vieweg, 1905.

[623] J. von Kries. “Chromatic Adaptation.” In Sources of Color Vision, edited by D. L. MacAdam. Cambridge, MA: MIT Press, 1970. Originally published in Festschrift der Albrecht-LudwigUniversitat, 1902.

[624] J. Kruger and P. Gouras. “Spectral Selectivity of Cells and Its Dependence on Slit Length in Monkey Visual Cortex.” Journal of Neurophysiology 43 (1979), 1055–1069.

[625] J. Kuang, H. Yamaguchi, G. M. Johnson, and M. D. Fairchild. “Testing HDR Image Rendering Algorithms.” In Proceedings of IS&T/SID 12th Color Imaging Conference, pp. 315–320. Springfield, VA: Society for Imaging Science and Technology, 2004.

[626] J. Kuang, G. M. Johnson, and M. D. Fairchild. “Image Preference Scaling for HDR Image Rendering.” In IS&T/SID 13th Color Imaging Conference, pp. 8–13. Springfield, VA: Society for Imaging Science and Technology, 2005.

[627] J. Kuang, H. Yamaguchi, C. Liu, G. M. Johnson, and M. D. Fairchild. “Evaluating HDR Rendering Algorithms.” ACM Transactions on Applied Perception 4:2 (2007), 9–1 – 9–27.

[628] P. Kubelka and F. Munk. “Ein Beitrag zur Optik der Farbanstriche.” Zeitschrift f¨ur technische Physik 12 (1931), 593–601.

[629] R. G. Kuehni. Computer Colorant Formulation. Lexington, MA: Lexington Books, 1975.

[630] R. G. Kuehni. Color: An Introduction to Practice and Principles. New York: John Wiley & Sons, 1997.

[631] R. G. Kuehni. Color Space and Its Divisions: Color Order from Antiquity to the Present. New York: Wiley-Interscience, 2003.

[632] S. W. Kuffler. “Discharge Patterns and Functional Organization of Mammalian Retina.” Journal of Neurophysiology 16 (1953), 37–68.

[633] T. Kuno, H. Sugiura, and N. Matoba. “New Interpolation Method using Discriminated Color Correction for Digital Still Cameras.” IEEE Transactions on Consumer Electronics 45:1 (1999), 259–267.

[634] C. J. Kuo and M. H. Tsai, editors. Three-Dimensional Holographic Imaging. New York: John Wiley and Sons, Inc., 2002.

[635] E. A. Lachica and V. A. Casagrande. “Direct W-Like Geniculate Projections to the Cytochrome-Oxydase (CO) Blobs in Primate Visual Cortex: Axon Morphology.” Journal of Comparative Neurology 319:1 (1992), 141–158.

[636] E. A. Lachica, P. D. Beck, and V. A. Casagrande. “Parallel Pathways in Macaque Monkey Striate Cortex: Anatomically Defined Columns in Layer III.” Proceedings of the National Academy of Sciences of the United States of America 89:8 (1992), 3566–3560.

[637] E. P. F. Lafortune, S.-C. Foo, K. E. Torrance, and D. P. Greenberg. “Non-Linear Approximation of Reflectance Functions.” In Proceedings of SIGGRAPH’97, Computer Graphics Proceedings, Annual Conference Series, pp. 117–126. Reading, MA: Addison-Wesley, 1997.

[638] R. Lakowski. “Colorimetric and Photometric Data for the 10th Edition of the Ishihara Plates.” The British Journal of Physiological Optics 22:4 (1965), 195–207.

[639] P. Lalonde and A. Fournier. “Filtered Local Shading in the Wavelet Domain.” In Proceedings of the 8th Eurographics Symposium on Rendering, pp. 163–174. Vienna: Springer-Verlag, 1997.

[640] P. Lalonde and A. Fournier. “A Wavelet Representation of Reflectance Functions.” IEEE Transactions on Visualization and Computer Graphics 3:4 (1997), 329–336.

[641] K. Lam. “Metamerism and Colour Constancy.” Ph.D. thesis, University of Bradford, 1985.

[642] T. D. Lamb and J. Bourriau, editors. Colour: Art and Science. Cambridge, UK: Cambridge University Press, 1995.

[643] T. D. Lamb. “Photoreceptor Spectral Sensitivities: Common Shape in the Long Wavelength Region.” Vision Research 35:22 (1995), 3083–3091.

[644] T. D. Lamb. “Photopigments and the Biophysics of Transduction in Cone Photoreceptors.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. Sharpe, pp. 89– 101. Cambridge, UK: Cambridge University Press, 1999.

[645] J. H. Lambert. “Photometria sive de mensura et gradibus luminis, colorum et umbrae.”, 1760.

[646] D. Lamming. “Contrast Sensitivity.” In Vision and Visual Dysfunction, edited by J. R. CronleyDillon. London: Macmillan Press, 1991.

[647] E. Land and J. McCann. “Lightness and Retinex Theory.” Journal of the Optical Society of America 61:1 (1971), 1–11.

[648] E. Land. “The Retinex Theory of Color Vision.” Scientific American 237:6 (1977), 108–128.

[649] E. Land. “Recent Advances in Retinex Theory.” Vision Research 26:1 (1986), 7–21.

[650] L. D. Landau and E. M. Lifshitz. Fluid Mechanics, Course of Theoretical Physics, 6, Second edition. Oxford: Pergamon, 1987.

[651] M. S. Langer. “Large-Scale Failures of f −α Scaling in Natural Image Spectra.” Journal of the Optical Society of America A 17:1 (2000), 28–33.

[652] I. Langmuir. “The Effect of Space Charge and Residual Gases on Thermionic Currents in High Vacuum.” Physical Review 2:6 (1913), 450–486.

[653] R. D. Larrabee. “Spectral Emissivity of Tungsten.” Journal of the Optical Society of America 49:6 (1959), 619–625.

[654] P. Laven. “Mieplot.” Available online (http://www.philiplaven.com).

[655] J. Lawrence, S. Rusinkiewicz, and R. Ramamoorthi. “Efficient BRDF Importance Sampling using a Factored Representation.” ACM Transactions on Graphics 23:3 (2004), 496–505.

[656] Y. Le Grand. Light, Colour and Vision, Second edition. Somerset, N.J.: Halsted Press, 1968. Translated by R. W. G. Hunt, J. W. T. Walsh and F. R. W. Hunt.

[657] S. J. Leat, R. V. North, and H. Bryson. “Do Long Wavelength Pass Filters Improve Low Vision Performance?” Ophthalmic and Physiological Optics 10:3 (1991), 219–224.

[658] P. Ledda, L.-P. Santos, and A. Chalmers. “A Local Model of Eye Adaptation for High Dynamic Range Images.” In Proceedings of ACM Afrigraph, pp. 151–160. New York: ACM, 2004.

[659] P. Ledda, A. Chalmers, T. Troscianko, and H. Seetzen. “Evaluation of Tone Mapping Operators using a High Dynamic Range Display.” ACM Transactions on Graphics 24:3 (2005), 640–648.

[660] B. B. Lee, P. R. Martin, and A. Valberg. “The Physiological Basis of Heterochromatic Flicker Photometry Demonstrated in the Ganglion Cells of the Macaque Retina.” Journal of Physiology 404 (1988), 323–347.

[661] B. B. Lee, J. Kremers, and T. Yeh. “Receptive Fields of Primate Retinal Ganglion Cells Studied with a Novel Technique.” Visual Neuroscience 15:1 (1998), 161–175.

[662] C. H. Lee, B. J. Moon, H. Y. Lee, E. Y. Chung, and Y. H. Ha. “Estimation of Spectral Distribution of Scene Illumination from a Single Image.” Journal of Imaging Science and Technology 44:4 (2000), 308–320.

[663] T. Lee, J. Zaumseil, Z. Bao, J. W. P. Hsu, and J. A. Rogers. “Organic Light-Emitting Diodes Formed by Soft Contact Lamination.” Proceedings of the National Academy of Sciences of the United States of America 101:2 (2004), 429–433.

[664] H.-C. Lee. “Method for Computing the Scene-Illuminant Chromaticity from Specular Highlight.” Journal of the Optical Society of America A 3:10 (1986), 1694–1699.

[665] H.-C. Lee. “Internet Color Imaging.” In Proceedings of the SPIE 3080, pp. 122–135. Bellingham, WA: SPIE, 2000.

[666] H.-C. Lee. Introduction to Color Imaging Science. Cambridge, UK: Cambridge University Press, 2005.

[667] A. Lefohn, R. Caruso, E. Reinhard, B. Budge, and P. Shirley. “An Ocularist’s Approach to Human Iris Synthesis.” IEEE Computer Graphics and Applications 23:6 (2003), 70–75.

[668] J. Lekner and M. C. Dorf. “Why Some Things Are Darker when Wet.” Applied Optics 27:7 (1988), 1278–1280.

[669] P. Lennie, J. Krauskopf, and G. Sclar. “Chromatic Mechanisms in Striate Cortex of Macaque.” Journal of Neuroscience 10:2 (1990), 649–669.

[670] P. Lennie, J. Pokorny, and V. C. Smith. “Luminance.” Journal of the Optical Society of America A 10:6 (1993), 1283–1293.

[671] H. Lensch, J. Kautz, M. Goessele, W. Heidrich, and H. Seidel. “Image-Based Reconstruction of Spatially Varying Materials.” In Proceedings of the 12th Eurographics Workshop on Rendering, edited by S. J. Gortler and K. Myszkowski, pp. 104–115. Aire-la-Ville, Switzerland: Eurographics Association, 2001.

[672] S. Lerman, J. M. Megaw, and M. N. Moran. “Further Studies on the Effects of UV Radiation on the Human Lens.” Ophthalmic Research 17:6 (1985), 354–361.

[673] A. G. Leventhal, R. W. Rodieck, and B. Dreher. “Retinal Ganglion Cell Classes in the Old World Monkey: Morphology and Central Projections.” Science 213 (1981), 1139–1142.

[674] A. G. Leventhal, K. G. Thompson, D. Liu, Y. Zhou, and S. J. Ault. “Concomitant Sensitivity to Orientation, Direction, and Color of Cells in Layers 2, 3, and 4 of Monkey Striate Cortex.” Journal of Neuroscience 15:3 (1995), 1808–1818.

[675] H. W. Leverenz. An Introduction to Luminescence of Solids. Mineola, NY: Dover Publications, 1968.

[676] M. Levoy and P. Hanrahan. “Light Field Rendering.” In Proceedings SIGGRAPH ’96, Computer Graphics Proceedings, Annual Conference Series, pp. 31–42. Reading, MA: AddisonWesley, 1996.

[677] I. Levy, U. Hasson, G. Avidan, T. Hendler, and R. Malach. “Center-Periphery Organization of Human Object Areas.” Nature Neuroscience 4:5 (2001), 533–539.

[678] P. A. Lewis. “Colorants: Organic and Inorganic Pigments.” In Color for Science, Art and Technology, edited by K. Nassau. Amsterdam: Elsevier Science B.V., 1998.

[679] X. Li and A. Gilchrist. “Relative Area and Relative Luminance Combine to Anchor Surface Lightness Values.” Perception and Psychophysics 61 (1999), 771–785.

[680] M. Li and J.-M. Lavest. “Some Aspects of Zoom Lens Camera Calibration.” IEEE Transactions on Pattern Analysis and Machine Intelligence 18:11 (1996), 1105–1110.

[681] Y. Li, L. Sharan, and E. H. Adelson. “Compressing and Companding High Dynamic Range Images with Subband Architectures.” ACM Transactions on Graphics 24:3 (2005), 836–844.

[682] Z. Li-Tolt, R. L. Fink, and Z. Yaniv. “Electron Emission from Patterned Diamond Flat Cathodes.” J. Vac. Sci. Tech. B 16:3 (1998), 1197–1198. 

[683] A. Liberles. Introduction to Molecular-Orbital Theory. New York: Holt, Rinehart and Winston, Inc., 1966.

[684] A. Lien. “A Detailed Derivation of Extended Jones Matrix Representation for Twisted Nematic Liquid Crystal Displays.” Liquid Crystals 22:2 (1997), 171–175.

[685] B. J. Lindbloom, 2005. Available online (http://www.brucelindbloom.com).

[686] D. Lischinski, Z. Farbman, M. Uyttendaele, and R. Szeliski. “Interactive Local Adjustment of Tonal Values.” ACM Transactions on Graphics 25:3 (2006), 646–653.

[687] D. Litwiller. “CCD vs. CMOS: Facts and Fiction.” Photonics Spectra 35:1 (2001), 151–154.

[688] D. Litwiller. “CCD vs. CMOS: Maturing Technologies, Maturing Markets.” Photonics Spectra 39:8 (2005), 54–58.

[689] C. Liu and M. D. Fairchild. “Measuring the Relationship between Pereived Image Contrast and Surround Illuminantion.” In IS&T/SID 12th Color Imaging Conference, pp. 282–288. Spring- field, VA: Society for Imaging Science and Technology, 2004.

[690] Y. Liu, J. Shigley, E. Fritsch, and S. Hemphill. “Abnormal Hue-Angle Change of the Gemstone Tanzanite between CIE Illuminants D65 and A in CIELAB Color Space.” Color Research and Application 20 (1995), 245–250.

[691] C. Liu, P. R. Jonas, and C. P. R. Saunders. “Pyramidal Ice Crystal Scattering Phase Functions and Concentric Halos.” Annales Geophysicae 14 (1996), 1192–1197.

[692] M. S. Livingstone and D. H. Hubel. “Anatomy and Physiology of a Color System in the Primate Visual Cortex.” Journal of Neuroscience 4:1 (1984), 309–356.

[693] M. S. Livingstone and D. H. Hubel. “Connections between Layer 4B of Area 17 and the Thick Cytochrome Oxidase Stripes of Area 18 in the Squirrel Monkey.” Journal of Neuroscience 7:11 (1987), 3371–3377.

[694] M. S. Livingstone and D. H. Hubel. “Segregation of Form, Color, Movement, and Depth: Anatomy, Physiology, and Perception.” Science 240:4853 (1988), 740–749.

[695] M. S. Livingstone. Vision and Art: The Biology of Seeing. New York: Harry N Abrams, 2002.

[696] M. M. Lo`eve. Probability Theory. Princeton: Van Nostrand, 1955.

[697] B. London and J. Upton. Photography, Sixth edition. London: Longman, 1998.

[698] A. V. Loughren. “Recommendations of the National Television System Committee for a Color Television Signal.” Journal of the SMPTE 60 (1953), 321–326, 596.

[699] O. Lowenstein and I. E. Loewenfeld. “The Pupil.” In The Eye, Volume 3, edited by H. Davson, pp. 255–337. New York: Academic Press, 1969.

[700] J. Lu and D. M. Healey. “Contrast Enhancement via Multiscale Gradient Transformation.” In Proceedings of the 16th IEEE International Conference on Image Processing, Volume II, pp. 482–486. Washington, DC: IEEE, 1992.

[701] R. Lu, J. J. Koenderink, and A. M. L. Kappers. “Optical Properties (Bidirectional Reflectance Distribution Functions) of Velvet.” Applied Optics 37:25 (1998), 5974–5984.

[702] R. Lu, J. J. Koenderink, and A. M. L. Kappers. “Specularities on Surfaces with Tangential Hairs or Grooves.” Computer Vision and Image Understanding 78 (1999), 320–335.

[703] B. D. Lucas and T. Kanade. “An Iterative Image Registration Technique with an Application to Stereo Vision.” In Proceedings of the 1981 DARPA Image Understanding Workshop, pp. 121– 130, 1981.

[704] M. P. Lucassen and J. Walraven. “Evaluation of a Simple Method for Color Monitor Recalibration.” Color Research and Application 15:6 (1990), 321–326.

[705] C. J. Lueck, S. Zeki, K. J. Friston, M.-P. Deiber, P. Cope, V. J. Cunningham, A. A. Lammertsma, C. Kennard, and R. S. J. Frackowiak. “The Colour Centre in the Cerebral Cortex of Man.” Nature 340:6232 (1989), 386–389.

[706] E. Lueder. Liquid Crystal Displays: Addressing Schemes and Electro-Optical Effects. Chichester, UK: John Wiley and Sons, Ltd., 2001.

[707] T. Lul´e, B. Schneider, and M. B¨ohm. “Design and Fabrication of a High-Dynamic-Range Image Sensor in TFA Technology.” IEEE Journal of Solid-State Circuits 34:5 (1999), 704–711.

[708] T. Lul´e, M. Wagner, M. Verhoeven, H. Keller, and M. B¨ohm. “100000-Pixel, 120-dB Imager in TFA Technology.” IEEE Journal of Solid-State Circuits 35:5 (2000), 732–739.

[709] J. S. Lund, R. D. Lund, A. E. Hendrickson, A. H. Bunt, and A. F. Fuchs. “The Origin of Efferent Pathways from the Primary Visual Cortex, Area 17, of the Macaque monkey as Shown by Retrogade Transport of Horseradish Peroxidase.” Journal of Comparative Neurology 164:3 (1975), 287–303.

[710] J. S. Lund. “Organization of Neurons in the Visual Cortex, Area 17, of the Monkey (Macaca mulatta).” Journal of Comparative Neurology 147:4 (1973), 455–496.

[711] M. Luo, A. Clark, P. Rhodes, A. Schappo, S. Scrivner, and C. Tait. “Quantifying Colour Appearance. Part I. LUTCHI Colour Appearance Data.” Color Research and Application 16 (1991), 166–180.

[712] M. Luo, A. Clark, P. Rhodes, A. Schappo, S. Scrivner, and C. Tait. “Quantifying Colour Appearance. Part II. Testing Colour Models Performance using LUTCHI Color Appearance Data.” Color Research and Application 16 (1991), 181–197.

[713] M. Luo, M.-C. Lo, and W.-G. Kuo. “The LLAB(l:c) Colour Model.” Color Research and Application 21 (1996), 412–429.

[714] M. R. Luo, G. Cui, and B. Rigg. “The Development of CIE2000 Colour-Difference Formula: CIEDE2000.” Color Research and Application 26:5 (2001), 340–350.

[715] R. Luther. “Aus dem Gebiet der Farbreizmetrik.” Zeitschrift f¨ur Technische Physik 8 (1927), 540–558.

[716] D. K. Lynch and W. Livingstone. Color and Light in Nature, Second edition. Cambridge, UK: Cambridge University Press, 2001.

[717] D. L. MacAdam. Sources of Color Science. Cambridge, MA: MIT Press, 1970.

[718] D. L. MacAdam. “Uniform Color Scales.” Journal of the Optical Society of America 64 (1974), 1619–1702.

[719] D. L. MacAdam. “Colorimetric Data for Samples of OSA Uniform Color Scales.” Journal of the Optical Society of America 68 (1978), 121–130.

[720] D. L. MacAdam. “Introduction.” In Selected Papers on Colorimetry — Fundamentals, edited by D. L. MacAdam. Bellingham, Washington: SPIE Optical Engineering Press, 1993.

[721] L. W. MacDonald. “Gamut Mapping in Perceptual Color Space.” In Proceedings of the First IS&T/SID Color Imaging Conference, pp. 193–196. Spriongfield, VA: Society for Imaging Science and Technology, 1993.

[722] D. I. A. MacLeod and R. M. Boynton. “Chromaticity Diagram Showing Cone Excitation by Stimuli of Equal Luminance.” Journal of the Optical Society of America 69:8 (1979), 1183– 1186.

[723] M. A. MacNeil and R. H. Masland. “Extreme Diversity among Amacrine Cells: Implications for Function.” Neuron 20 (1998), 971–982.

[724] J. B. MacQueen. “Some Methods for Classification and Analysis of Multivariate Observations.” In Proceedings of the 5th Berkeley Symposium on Mathematical Statistics and Probability, pp. 281–297. Berkeley: University of California Press, 1967.

[725] M. Mahy. “Calculation of Color Gamuts Based on the Neugebauer Model.” Color Research and Application 22 (1997), 365–374.

[726] R. Malach, R. B. Tootell, and D. Malonek. “Relationship between Orientation Domains, Cytochrome Oxydase Strips, and Intrinsic Horizontal Connections in Squirrel Monkey Area V2.” Cerebral Cortex 4:2 (1994), 151–165.

[727] R. Malladi and J. A. Sethian. “Image Processing via Level Set Curvature Flow.” Proceedings of the National Academy of Science 92:15 (1995), 7046–7050.

[728] L. T. Maloney and B. A. Wandell. “Color Constancy: A Method for Recovering Surface Spectral Reflectance.” Journal of the Optical Society of America A 3:1 (1986), 29–33.

[729] L. T. Maloney. “Evaluation of Linear Models of Surface Spectral Reflectance with Small Number of Parameters.” Journal of the Optical Society of America A 3 (1986), 1673–1683.

[730] ´Etienne. L. Malus. “Sur la mesure du pouvoir r´efringent des corps opaques.” Journal de l’ ´ Ecole Polytechnique 15:8 (1809), 219–228.

[731] S. Mann and R. W. Picard. “On Being ‘Undigital’ with Digital Cameras: Extending Dynamic Range by Combining Differently Exposed Pictures.” In IS&T’s 48th Annual Conference, pp. 422–428. Springfield, VA: Society for Imaging Science and Technology, 1995.

[732] R. J. W. Mansfield. “Primate Photopigments and Cone Mechanisms.” In The Visual System, edited by A. Fein and J. S. Levine, pp. 89–106. New York: Alan R Liss, 1985.

[733] R. Mantiuk, A. Efremov, K. Myszkowski, and H.-P. Seidel. “Backward Compatible High Dynamic Range MPEG Video Compression.” ACM Transactions on Graphics 25:3 (2006), 713–723.

[734] E. W. Marchand. “Gradient Index Lenses.” In Progress in Optics, XI, edited by E. Wolf, XI, pp. 305–337. Amsterdam: North Holland, 1973.

[735] R. F. Marcinik and K. M. Revak. “Effects of New Cool White Fluorescent Lamps on Viewing and Measuring Color.” Textile Chemist and Colorist 30:1 (1998), 14–16.

[736] D. Marcuse. Light Transmission Optics, Second edition. New York: Van Nostrand Reinhold Company, 1982.

[737] D. Marini and A. Rizzi. “A Computational Approach to Color Adaptation Effects.” Image and Vision Computing 18:13 (2000), 1005–1014.

[738] D. Marini, A. Rizzi, and C. Carati. “Color Constancy Effects Measurement of the Retinex Theory.” In Proceedings of the IS&T/SPIE Conference on Electronic Imaging, pp. 23–29. Spring- field, VA: Society for Imaging Science and Technology, 1999.

[739] K. Z. Markov. “Elementary Micromechanisms of Heterogeneous Media.” In Heterogeneous Media: Modelling and Simulation, edited by K. Z. Markov and L. Preziosi, pp. 1–162. Boston: Birkhauser, 1999.

[740] T. J. Marks, J. G. C. Veinot, J. Cui, H. Yan, A. Wang, N. L. Edlerman, J. Ni, Q. Huang, P. Lee, and N. R. Armstrong. “Progress in High Work Function TCO OLED Anode Alternatives and OLED Nanopixelation.” Synthetic Metals 127 (2002), 29–35.

[741] G. H. Markstein. Nonsteady Flame Propagation. Oxford, UK: Pergamon, 1964.

[742] D. Marr. Vision, A Computational Investigation into the Human Representation and Processing of Visual Information. San Fransisco: W. H. Freeman and Company, 1982.

[743] J. S. Marsh and D. A. Plant. “Instrumental Colour Match Prediction using Organic Pigments.” Journal of the Oil and Colour Chemists Association 47 (1964), 554–575.

[744] S. R. Marshner, S. H. Westin, E. P. F. Lafortune, K. E. Torrance, and D. P. Greenberg. “ImageBased BRDF Measurement Including Human Skin.” In Proceedings of the 10th Eurographics Workshop on Rendering, pp. 139–152. Aire-la-Ville, Switzerland: Eurographics Association, 1999.

[745] S. R. Marshner, S. H. Westin, E. P. F. Lafortune, and K. Torrance. “Image-Based Measurement of the Bidirectional Reflectance Distribution Function.” Applied Optics 39:16 (2000), 2592– 2600.

[746] P. R. Martin, B. B. Lee, A. J. R. White, S. G. Solomon, and L. R¨uttiger. “Chromatic Sensitivity of Ganglion Cells in the Peripheral Primate Retina.” Nature 410:6831 (2001), 933–936.

[747] K. A. C. Martin. “Microcircuits in Visual Cortex.” Current Opinion in Neurobiology 12:4 (2002), 418–425.

[748] M. Mase, S. Kawahito, M. Sasaki, and Y. Wakamori. “A 19.5b Dynamic Range CMOS Image Sensor with 12b Column-Parallel Cyclic A/D Converters.” In IEEE International Solid-State Circuits Conference (ISSCC), pp. 350–351, 2005.

[749] R. H. Masland. “Processing and Encoding of Visual Information in the Retina.” Current Opinion in Neurobiology 6 (1996), 467–474.

[750] M. Massimi. Pauli’s Exclusion Principle: The Origin and Validation of a Scientific Principle. Cambridge, UK: Cambridge University Press, 2005.

[751] W. Matusik, H. Pfister, M. Brand, and L. McMillan. “A Data-Driven Reflectance Model.” ACM Transactions on Graphics 22:3 (2003), 759–769.

[752] W. Matusik, H. Pfister, M. Brand, and L. McMillan. “Efficient Isotropic BRDF Measurement.” In Proceedings of the 14th Eurographics Symposium on Rendering, pp. 241–316. Aire-la-Ville, Switzerland: Eurographics Association, 2003.

[753] J. H. R. Maunsell and D. C. van Essen. “The Connections of the Middle Temporal Visual Area (MT) and Their Relationship to a Cortical Hierarchy in the Macaque Monkey.” Journal of Neuroscience 3:12 (1983), 2563–2586.

[754] J. H. R. Maunsell and W. T. Newsome. “Visual Processing in Monkey Extrastriate Cortex.” Annual Review of Neuroscience 10 (1987), 363–401.

[755] D. M. Maurice. “The Structure and Transparency of the Cornea.” Journal of Physiology 136:2 (1957), 263–286.

[756] J. C. Maxwell. “Experiments on Color, as Perceived by the Eye, with Remarks on ColorBlindness.” Transactions of the Royal Society of Edinburgh 21 (1855), 275–298.

[757] C. S. McCamy, H. Marcus, and J. G. Davidson. “A Color Rendition Chart.” Journal of Applied Photographic Engineering 2:3 (1976), 95–99.

[758] J. J. McCann and A. Rizzi. “Veiling Glare: The Dynamic Range Limit of HDR Images.” In Human Vision and Electronic Imaging XII, 6492, 6492. SPIE, 2007.

[759] J. McCann. “Lessons Learned from Mondrians Applied to Real Images and Color Gamuts.” In Proceedings of the IS&T Seventh Color Imaging Conference, pp. 1–8. Springfield, VA: Society for Imaging Science and Technology, 1999.

[760] E. J. McCartney. Optics of the Atmosphere: Scattering by Molecules and Particles. New York: John Wiley and Sons, Inc., 1976.

[761] W. R. McCluney. Introduction to Radiometry and Photometry. Boston: Artech House Publishers, 1994.

[762] C. McCollough. “Color Adaptation of Edge Detectors in the Human Visual System.” Science 149:3688 (1965), 1115–1116.

[763] C. McCollough. “Do McCollough Effects Provide Evidence for Global Pattern Processing?” Perception and Psychophysics 62:2 (2000), 350–362.

[764] M. McCool, J. Ang, and A. Ahmad. “Homomorphic Factorization of BRDFs for HighPerformance Rendering.” In Proceedings of SIGGRAPH 2001, Computer Graphics Proceedings, Annual Conference Series, pp. 171–178. Resding, MA: Addison-Wesley, 2001.

[765] R. McDonald. “Acceptibility and Perceptibility Decisions using the CMC Colour Difference Formula.” Textile Chemist and Colorist 20:6 (1988), 31–31.

[766] D. McIntyre. Colour Blindness: Causes and Effects. Austin, TX: Dalton Publishing, 2002.

[767] K. McLaren. The Colour Science of Dyes and Pigments, Second edition. Bristol, UK: Adam Hilger Ltd., 1986.

[768] D. McQuarrie. Quantum Chemistry. Mill Valley, CA: University Science Books, 1983.

[769] H. McTavish. “A Demonstration of Photosynthetic State Transitions in Nature.” Photosynthesis Research 17 (1988), 247–247.

[770] C. A. Mead. “Operation of Tunnel-Emission Devices.” Journal of Applied Physics 32:4 (1961), 646–652.

[771] J. A. Medeiros. Cone Shape and Color Vision: Unification of Structure and Perception. Blountsville, AL: Fifth Estate Publishers, 2006.

[772] J. Mellerio. “Yellowing of the Human Lens: Nuclear and Cortical Contributions.” Vision Research 27:9 (1987), 1581–1587.

[773] C. E. Metz. “Basic Principles of ROC Analysis.” Seminars in Nuclear Medicine 8 (1978), 283–298.

[774] L. Meylan and S. S¨usstrunk. “Color Image Enhancement using a Retinex-Based Adaptive Filter.” In Proceedings of the 2nd IS&T European Conference on Color in Graphics, Image, and Vision (CGIV 2004), pp. 359–363. Springfield, VA: Society for Imaging Science and Technology, 2004.

[775] L. Meylan and S. S¨usstrunk. “High Dynamic Range Image Rendering with a Retinex-Based Adaptive Filter.” IEEE Transactions on Image Processing 15:9 (2006), 2820–2930.

[776] L. Meylan, S. Daly, and S. S¨usstrunk. “The Reproduction of Specular Highlights on High Dynamic Range Displays.” In Proceedings of the 14th IS&T/SID Color Imaging Conference. Springfield, VA: Society for Imaging Science and Technology, 2006.

[777] L. Meylan, D. Alleysson, and S. S¨usstrunk. “A Model of Retinal Local Adaptation for the Tone Mapping of CFA Images.” Journal of the Optical Society of America A.

[778] L. Meylan, S. Daly, and S. S¨usstrunk. “Tone Mapping for High Dynamic Range Displays.” In Proceedings of SPIE 6492 (Human Vision and Electronic Imaging XII). Belingham, WA: SPIE, 2007.

[779] G. Mie. “Beitr¨age zur Optik tr¨uber Medien, speziell kolloidaler Metall¨osungen.” Annalen der Physik 25:4 (1908), 377–377.

[780] N. J. Miller, P. Y. Ngai, and D. D. Miller. “The Application of Computer Graphics in Lighting Design.” Journal of the IES 14 (1984), 6–26.

[781] J. Millman. “Electronic Energy Bands in Metallic Lithium.” Physical Review 47:4 (1935), 286–290.

[782] W. I. Milne and K. B. K. Teo. “Growth and Characterization of Carbon Nanotubes for Field Emission Display Applications.” Journal of the Society for Information Display 12 (2004), 289–292.

[783] M. G. J. Minnaert. Light and Color in the Outdoors. New York: Springer-Verlag, 1993.

[784] T. Mitsunaga and S. K. Nayar. “Radiometric Self Calibration.” In International Conference on Computer Vision and Pattern Recognition, pp. 374–380. Washington, DC: IEEE Press, 1999.

[785] J. D. Mollon and J. K. Bowmaker. “The Spatial Arrangement of Cones in the Primate Retina.” Nature 360:6405 (1992), 677–679.

[786] J. D. Mollon and G. Est´evez. “Tyndall’s Paradox of Hue Discrimination.” Journal of the Optical Society of America A 5 (1988), 151–159.

[787] J. D. Mollon. “‘Tho’ She Kneel’d in that Place where They Grew...’, The Uses and Origins of Primate Colour Vision.” Journal of Experimental Biology 146 (1989), 21–38.

[788] F. M. De Monasterio and P. Gouras. “Functional Properties of Ganglion Cells of the Rhesus Monkey Retina.” Journal of Physiology (London) 251 (1975), 167–195.

[789] P. Moon and D. E. Spencer. “On the Stiles-Crawford effect.” Journal of the Optical Society of America 34:6 (1944), 319–329.

[790] G. Mori and J. Malik. “Recognizing Objects in Adversarial Clutter: Breaking a Visual Captcha.” In Proceedings of CVPR, pp. 134–141. Los Alamitos, CA: IEEE Computer Society, 2003.

[791] N. Moroney and I. Tastl. “A Comparison of Retinex and iCAM for Scene Rendering.” Journal of Electronic Imaging 13:1 (2004), 139–145.

[792] N. Moroney. “Chroma Scaling and Crispening.” In IS&T/SID 9th Color Imaging Conference, pp. 97–101. Springfield, VA: Society for Imaging Science and Technology, 2001.

[793] N. Moroney. “A Hypothesis Regarding the Poor Blue Constancy of CIELAB.” Color Research and Application 28 (2003), 371–378.

[794] J. Morovic and M. R. Luo. “Gamut Mapping Algorithms Based on Psychophysical Experiment.” In Proceedings of the 5th IS&T/SID Color Imaging Conference, pp. 44–49. Springfield,VA: Society for Imaging Science and Technology, 1997.

[795] J. Morovic and M. R. Luo. “The Fundamentals of Gamut Mapping: A Survey.” Journal of Imaging Science and Technology 45:3 (2001), 283–290.

[796] J. Morovic and P. L. Sun. “The Influence of Image Gamuts on Cross-Media Colour Image Reproduction.” In Proceedings of the 8th IS&T/SID Color Imaging Conference, pp. 324–329. Springfield, VA: Society for Imaging Science and Technology, 2000.

[797] J. Morovic. “To Develop a Universal Gamut Mapping Algorithm.” Ph.D. thesis, University of Derby, Derby, UK, 1998.

[798] J. Morovic. “Gamut Mapping.” In Digital Color Imaging Handbook, edited by G. Sharma, Chapter 10, pp. 639–685. Boca Raton, FL: CRC Press, 2003.

[799] B. Moulden and F. A. A. Kingdom. “White’s Effect: A Dual Mechanism.” Vision Research 29 (1989), 1245–1236.

[800] K. Moutoussis and S. Zeki. “Responses of Spectrally Selective Cells in Macaque Area V2 to Wavelengths and Colors.” Journal of Neurophysiology 87:4 (2002), 2104–2112.

[801] K. T. Mullen and F. A. A. Kingdom. “Losses in Periferal Colour Sensitivity Predicted from “Hit and Miss” Post-Receptoral Cone Connections.” Vision Research 36:13 (1996), 1995–2000.

[802] C. D. M¨uller, A. Falcou, N. Reckefuss, M. Rojahn, V. Wiederhirn, P. Rudati, H. Frohne, O. Nuyken, H. Becker, and K. Meerholtz. “Multi-Colour Organic Light Emitting Displays by Solution Processing.” Nature 421 (2003), 829–833.

[803] H. M¨uller. “ ¨ Uber die entoptische Wahrnehmung der Netzhautgef¨asse, insbesondere als Beweismittel f¨ur die Lichtperzeption durch die nach hinten gelegenen Netzhautelemente.” Verhandlungen der Physikalisch Medizinische Gesellschaft in W¨urzburg 5 (1854), 411–411.

[804] J. C. Mullikin, L. J. van Vliet, H. Netten, F. R. Boddeke, G. van der Feltz, and I. T. Young. “Methods for CCD Camera Characterization.” In Image Acquisition and Scientific Imaging Systems, SPIE vol. 2173, edited by H. C. Titus and A. Waks, SPIE vol. 2173, pp. 73–84, 1994.

[805] A. H. Munsell. A Color Notation, First edition. Baltimore, MD: Munsell Color Company, 1905.

[806] A. H. Munsell. Atlas of the Munsell Color System. Malden, MA: Wadsworth-Howland and Company, 1915. 

[807] A. H. Munsell. Munsell Book for Color. Baltimore, MD: Munsell Color Company, 1929.

[808] A. H. Munsell. A Color Notation: An Illustrated System Defining All Colors and Their Relations by Measured Scales of Hue, Value, and Chroma, Ninth edition. Baltimore, MD: Munsell Color Company, 1941.

[809] Y. Muramatsu, S. Kurosawa, M. Furumiya, H. Ohkubo, and Y. Nakashiba. “A SignalProcessing CMOS Image Sensor using a Simple Analog Operation.” In IEEE International Solid-State Circuits Conference (ISSCC), pp. 98–99, 2001.

[810] S. Musa. “Active-Matrix Liquid-Crystal Displays.” Scientific American November.

[811] K. I. Naka and W. A. H. Rushton. “S-Potentials from Luminosity Units in the Retina of Fish (Cyprinidae).” Journal of Physiology (London) 185:3 (1966), 587–599.

[812] J. Nakamura. “Basics of Image Sensors.” In Image Sensors and Signal Processing for Digital Still Cameras, edited by J. Nakamura, pp. 53–93. Boca Raton, FL: Taylor and Francis, 2006.

[813] J. Nakamura, editor. Image Sensors and Signal Processing for Digital Still Cameras. Boca Raton, FL: Taylor and Francis, 2006.

[814] K. Nassau. “Fundamentals of Color Science.” In Color for Science, Art and Technology, edited by K. Nassau. Amsterdam: Elsevier Science B.V., 1998.

[815] K. Nassau. The Physics and Chemistry of Color: The Fifteen Causes of Color. New York: John Wiley and Sons, 2001.

[816] S. K. Nayar and V. Branzoi. “Adaptive Dynamic Range Imaging: Optical Control of Pixel Exposures over Space and Time.” In International Conference on Computer Vision, Volume 2, pp. 1168–1175. Washington, DC: IEEE Press, 2003.

[817] S. K. Nayar and T. Mitsunaga. “High Dynamic Range Imaging: Spatially Varying Pixel Exposures.” In International Conference on Computer Vision and Pattern Recognition, Volume 1, pp. 472–479. Washington, DC: IEEE Press, 2000.

[818] S. K. Nayar, G. Krishnan, M. D. Grossberg, and R. Raskar. “Fast Separation of Direct and Global Components of a Scene using High Frequency Illumination.” ACM Transactions on Graphics 25:3 (2006), 935–944.

[819] Y. Nayatani, K. Takahama, and H. Sobagaki. “Formulation of a Nonlinear Model of Chromatic Adaptation.” Color Research and Application 6 (1981), 161–171.

[820] Y. Nayatani, K. Takahama, H. Sobagaki, and J. Hirono. “On Exponents of a Nonlinear Model of Chromatic Adaptation.” Color Research and Application 7 (1982), 34–45.

[821] Y. Nayatani, T. Mori, K. Hashimoto, and H. Sobagaki. “Comparison of Color Appearance Models.” Color Research and Application 15 (1990), 272–284.

[822] Y. Nayatani. “Proposal of an Opponent Colors System Based on Color Appearance and Color Vision Studies.” Color Research and Application 29 (2004), 135–150.

[823] M. Neitz, J. Neitz, and G. H. Jacobs. “Spectral Tuning of Pigments Underlying Red-Green Color Vision.” Science 252 (1991), 971–974.

[824] J. Neitz, J. Carroll, Y. Yamauchi, M. Neitz, and D. R. Williams. “Color Perception Is Mediated by a Plastic Neural Mechanism that Is Adjustable in Adults.” Neuron 35:4 (2002), 783–792.

[825] R. Nelson and H. Kolb. “A17: A Broad-Field Amacrine Cell of the Rod System in the Retina of the Cat.” Joural of Neurophysiology 54 (1985), 592–614.

[826] R. Nelson. “Visual Responses of Ganglion Cells.”, 2006. Webvision Article. Available online (http://webvision.med.utah.edu).

[827] F. L. van Ness and M. A. Bouman. “Spatial Modulation Transfer in the Human Eye.” Journal of the Optical Society of America 57 (1967), 401–406.

[828] H. E. J. Neugebauer. “Die theoretischen Grundlagen des Mehrfarbenbuchdrucks.” Zeitschrift f¨ur wissenschaftliche Photographie, Photophysik und Photochemie 36:4 (1937), 73–89.

[829] H. J. Neugebauer. “Clausius-Mosotti Equation for Anisotropic Crystals.” Physical Review 88:5 (1952), 1210–1210.

[830] H. Neumann, L. Pessoa, and T. Hansen. “Visual Filling-In for Computing Perceptual Surface Properties.” Biological Cybernetics 85 (2001), 355–369.

[831] S. Newhall. “Preliminary Report of the O.S.A. Subcommittee on the Spacing of the Munsell Colors.” Journal of the Optical Society of America 30 (1940), 617–645.

[832] R. G. Newton. Scattering Theory of Waves and Particles, Second edition. Mineola, NY: Dover Publications, 2002.

[833] M. Nezamabadi and R. S. Berns. “The Effect of Image Size on the Color Appearance of Image Reproduction using Colorimetrically Calibrated LCD and DLP Displays.” Journal of the Society for Information Display 14:9 (2006), 773–783.

[834] R. Ng, M. Levoy, M. Bredif, G. Duval, M. Horowitz, and P. Hanrahan. “Light Field Photography with a Hand-Held Plenoptic Camera.”, 2005.

[835] D. Q. Nguyen, R. Fedkiw, and H. W. Jensen. “Physically Based Modeling and Animation of Fire.” ACM Transactions on Graphics 21:3 (2002), 721–728.

[836] D. Nickerson. “Munsell Renotations for Samples of OSA Uniform Color Scales.” Journal of the Optical Society of America 68 (1978), 1343–1347.

[837] D. Nickerson. “OSA Uniform Color Scales Samples — A Unique Set.” Colour Research and Application 6 (1981), 7–33.

[838] F. E. Nicodemus, J. C. Richmond, J. J. Hsia, I. W. Ginsberg, and T. Limperis. “Geometrical Considerations and Nomenclature for Reflectance.” Technical Report Monograph 160, National Bureau of Standards (US), Gaithersburg, MD, 1977.

[839] F. E. Nicodemus, editor. Self-Study Manual on Optical Radiation Measurements. National Bureau of Standards, 1976. Technical Note 910-1.

[840] C. L. Nikias and A. P. Petropulu. Higher-Order Spectra Analysis. Signal Processing Series, Englewood Cliffs, NJ: Prentice Hall, 1993.

[841] M. Nonako, T. Kashmina, and Y. Knodo. “A 5-Meter Integrating Sphere.” Applied Optics 6:4 (1967), 757–771.

[842] V. O’Brien. “Contour Perception, Illusion and Reality.” Journal of the Optical Society of America 49 (1958), 112–119.

[843] S. Ogata, J. Ishida, and T. Sasano. “Optical Sensor Array in an Artificial Compound Eye.” Optical Engineering 33:11 (1994), 3649–3655.

[844] M. P. Ogren and A. E. Hendrickson. “Pathways between Striate Cortex and Subcortical Regions in Macaca mulatta and Saimiri sciureus: Evidence for a Reciprocal Pulvinar Connection.” Journal of Comparative Neurology 53 (1976), 780–800.

[845] T. Oguchi, E. Yamaguchi, K. Sazaki, K. Suzuki, S. Uzawa, and K. Hatanaka. “A 36 Inch Surface-Conduction Electron-Emitter Display (SED).” In Technical Digest of the Society for Information Display (SID), pp. 1929–1931. San Jose, CA: Society for Information Display, 2005.

[846] K. Ohki, S. Chung, Y. H. Ch’ng, P. Kara, and R. C. Reid. “Functional Imaging with Cellular Resolution Reveals Precise Micro-Architecture in Visual Cortex.” Nature 433:7026 (2005), 597–603.

[847] K. Ohno and T. Kusunoki. “The Effect of Ultrafine Pigment Color Filters on Cathode Ray Tube Brightness, Contrast, and Color Purity.” Journal of the Electrochemical Society 143:3 (1996), 1063–1067.

[848] Y. Ohno. “Spectral Design Considerations for White LED Color Rendering.” Optical Engineering 44:11 (2005), 111302–1 – 111302–9.

[849] N. Ohta and A. R. Robertson. Colorimetry: Fundamentals and Applications. Chichester, UK: John Wiley and Sons, 2005.

[850] R. Oi and K. Aizawa. “Wide Dynamic Range Imaging by Sensitivity Adjustable CMOS Image Sensor.” In Proceedings of the IEEE International Conference on Image Processing (ICIP), pp. 583–586, 2003.

[851] H. W. Ok, S. D. Lee, W. H. Choe, D. S. Park, and C. Y. Kim. “Color Processing for Multi-Primary Display Devices.” In IEEE International Conference on Image Processing 2005, pp. 980–983. Washington, DC: IEEE, 2005.

[852] K. Okinaka, A. Saitoh, T. Kawai, A. Senoo, and K. Ueno. “High Performable Green-Emitting OLEDs.” SID Symposium Digest of Technical Papers 35:1 (2004), 686–689.

[853] B. A. Olshausen and D. J. Field. “Emergence of Simple-Cell Receptive Field Properties by Learning a Sparse Code for Natural Images.” Nature 381 (1996), 607–609.

[854] B. A. Olshausen and D. J. Field. “How Close Are We to Understanding V1?” Neural Computation 17:8 (2005), 1665–1699.

[855] W. O’Mara. Liquid Crystal Flat Panel Displays: Manufacturing Science and Technology. New York: Van Nostrand Reinhold, 1993.

[856] A. V. Oppenheim, R. Schafer, and T. Stockham. “Nonlinear Filtering of Multiplied and Convolved Signals.” Proceedings of the IEEE 56:8 (1968), 1264–1291.

[857] A. V. Opppenheim and R. Schafer. Digital Signal Processing. Englewood Cliffs, NJ: Prentice Hall, 1975.

[858] A. V. Opppenheim, R. Schafer, and J. R. Buck. Discrete-Time Signal Processing, Second edition. Englewood Cliffs, NJ: Prentice-Hall, 1999.

[859] M. Oren and S. K. Nayar. “Generalization of Lambert’s Reflectance Model.” In Proceedings of SIGGRAPH ’94, Computer Graphics Proceedings, Annual Conference Series, edited by A. Glassner, pp. 239–246. New York: ACM Press, 1994.

[860] OSA. The Science of Color. Washington: Optical Society of America, 1963.

[861] D. Osorio, D. L. Ruderman, and T. W. Cronin. “Estimation of Errors in Luminance Signals Encoded by Primate Retina Resulting from Sampling of Natural Images with Red and Green Cones.” Journal of the Optical Society of America A 15:1 (1998), 16–22.

[862] G. Østerberg. “Topography of the Layer of Rods and Cones in the Human Retina.” Acta Ophthalmologica, Supplement 6 (1935), 1–103.

[863] V. Ostromoukhov, C. Donohue, and P. Jodoin. “Fast Hierarchical Importance Sampling with Blue Noise Properties.” ACM Transactions on Graphics 23:3 (2004), 488–495.

[864] V. Ostromoukhov. “Chromaticity Gamut Enhancement by Heptatone Multi-Color Printing.” In Proceedings IS&T/SPIE 1909, 1993 International Symposium on Electronic Imaging: Science & Technology, pp. 139–151. Bellingham, WA: SPIE, 1993.

[865] C. A. Padgham and J. E. Saunders. The Perception of Light and Color. New York: Academic Press, 1975.

[866] R. H. Page, K. I. Schaffers, P. A. Waide, J. B. Tassano, S. A. Payne, W. F. Krupke, and W. K. Bischel. “Upconversion-Pumped Luminescence Efficiency of Rare-Earth-Doped Hosts Sensitized with Trivalent Ytterbium.” Journal of the Optical Society of America B 15:3 (1998), 996–1008.

[867] G. Palmer. Theory of Colors and Vision. London: Leacroft, 1777. Reprinted in David L MacAdam (ed.), Selected Papers on Colorimetry — Fundamentals, SPIE Optical Engineering Press, 1993.

[868] S. Palmer. Vision Science: Photons to Phenomenology. Cambridge MA: MIT Press, 1999.

[869] M. A. Paradiso and K. Nakayama. “Brightness Perception and Filling-In.” Vision Research 31 (1991), 1221–1236.

[870] D. A. Pardo, G. E. Jabbour, and N. Peyghambarian. “Application of Screen Printing in the\\ Fabrication of Organic Light Emitting Diodes.” Advanced Materials 12:17 (2000), 1249–1252.

[871] S. Paris and F. Durand. “A Fast Approximation of the Bilateral Filter using a Signal Processing Approach.” In Computer Vision- ECCV 2006, Lecture Notes in Computer Science. Berlin: Springer-Verlag, 2006.

[872] S. H. Park and E. D. Montag. “Evaluating Tone Mapping Algorithms for Rendering NonPictorial (Scientific) High-Dynamic-Range Images.” Journal of Visual Communication and Image Representation 18:5 (2007), 415–428.

[873] S. C. Park and R. R. Shannon. “Zoom Lens Design using Lens Modules.” Optical Engineering 35:6 (1996), 1668–1676.

[874] R. H. Park and E. I. Stearns. “Spectrophotometric Formulation.” Journal of the Optical Society of America 34:2 (1944), 112–113.

[875] S. Parker, W. Martin, P.-P. Sloan, P. Shirley, B. Smits, and C. Hansen. “Interactive Ray Tracing.” In Symposium on Interactive 3D Computer Graphics, pp. 119–126. New York: ACM Press, 1999.

[876] S. Parker, M. Parker, Y. Livnat, P.-P. Sloan, C. Hansen, and P. Shirley. “Interactive Ray Tracing for Volume Visualization.” IEEE Transactions on Visualization and Computer Graphics 5:3 (1999), 238–250.

[877] A. C. Parr. “A National Measurement System for Radiometry, Photometry, and Pyrometry based upon Absolute Detectors, (Version 1.0) [Online].” Originally published as: NIST Technical Note 1421, September 1996. Available online (A National Measurement System for Radiometry, Photometry, and Pyrometry Based upon Absolute Detectors | NIST).

[878] C. A. P´arraga, G. Brelstaff, T. Troscianko, and I. R. Moorhead. “Color and Luminance Information in Natural Scenes.” Journal of the Optical Society of America A 15:3 (1998), 563–569.

[879] C. A. P´arraga, T. Troscianko, and D. J. Tolhurst. “The Human Visual System Is Optimised for Processing the Spatial Information in Natural Visual Images.” Current Biology 10:1 (2000), 35–38.

[880] K. A. Parulski. “Color Filter Arrays and Processing Alternatives for One-Chip Cameras.” IEEE Transactions on Electron Devices 32:8 (1985), 1381–1389.

[881] E. Parzen. “On Estimation of a Probability Density and Mode.” Annals of Mathematical Statistics 33 (1962), 1065–1076.

[882] D. Pascale. “A Review of RGB Color Spaces.” Technical report, The BabelColor Company, 2003. Available online (http://www.babelcolor.com).

[883] S. N. Pattanaik and H. Yee. “Adaptive Gain Control for High Dynamic Range Image Display.” In Proceedings of Spring Conference in Computer Graphics (SCCG2002), pp. 24–27. New York: ACM Press, 2002.

[884] S. N. Pattanaik, J. A. Ferwerda, M. D. Fairchild, and D. P. Greenberg. “A Multiscale Model of Adaptation and Spatial Vision for Realistic Image Display.” In Proceedings SIGGRAPH ’98, Computer Graphics Proceedings, Annual Conference Series, pp. 287–298. Reading, MA: Addison-Wesley, 1998.

[885] S. N. Pattanaik, J. Tumblin, H. Yee, and D. P. Greenberg. “Time-Dependent Visual Adaptation for Fast Realistic Display.” In Proceedings SIGGRAPH 2000, Computer Graphics Proceedings, Annual Conference Series, pp. 47–54. Reading, MA: Addison-Wesley, 2000. 

[886] W. Pauli. “ Uber den Zusammenhang des Abschlusses von Elektronengruppen im Atom mit der Komplexstructure der Spektren.” Zeitschrift f¨ur Physik 31 (1925), 765–783.

[887] A. L. Pearlman, J. Birch, and J. C. Meadows. “Cerebral Color Blindness: An Acquired Defect in Hue Discrimination.” Annals of Neurology 5:3 (1979), 253–261.

[888] E. Peli. “Contrast in Complex Images.” Journal of the Optical Society of America 7:10 (1990), 2032–2040.

[889] D. J. Perkel, J. Bullier, and H. Kennedy. “Topography of the Afferent Connectivity of Area 17 in the Macaque Monkey: A Double Labelling Study.” Journal of Comparative Neurology 253:3 (1986), 374–402.

[890] P. Perona and J. Malik. “Scale-Space and Edge Detection using Anisotropic Diffusion.” IEEE Transactions on Pattern Analysis and Machine Intelligence 12:7 (1990), 629–639.

[891] V. H. Perry, R. Oehler, and A. Cowey. “Retinal Ganglion Cells that Project to the Dorsal Lateral Geniculate Nucleus in the Macaque Monkey.” Neuroscience 12:4 (1984), 1101–1123.

[892] B. B. Petersen and D. M. Dacey. “Morphology of Retinal Ganglion Ccells with Intra-Retinal Axon Collaterals.” Visual Neuroscience 15:2 (1998), 377–387.

[893] M. Petrou and P. Bosdogianni. Image Processing: The Fundamentals. Chichester, UK: John Wiley and Sons, Ltd., 1999.

[894] M. Pfeiffer, S. R. Forrest, X. Zhou, and K. Leo. “A Low Drive Voltage, Transparent, Metal-Free n-i-p Electrophosphorescent Light Emitting Diode.” Organic Electronics 4 (2003), 21–26.

[895] M. Pharr and G. Hunphreys. Physically Based Rendering: From Theory to Implementation. San Francisco, CA: Morgan Kaufmann Publishers, 2004.

[896] M. L. F. Phillips, M. P. Hehlen, K. Nguyen, J. M. Sheldon, and N. J. Cockroft. “Upconversion Phosphors: Recent Advances and New Applications.” In Physics and Chemistry of Luminescent Materials. Proceedings of the Eighth International Symposium (Electrochemical Society Proceedings Vol 99-40), pp. 123–129. Pennington, NJ: The Electrochemical Society, 2000.

[897] B. T. Phong. “Illumination for Computer Generated Pictures.” Communications of the ACM 18:6 (1975), 311–317.

[898] B. Pinna, G. Brelstaff, and L. Spillmann. “Surface Color from Boundaries: A New ‘Watercolor’ Illusion.” Vision Research 41 (2001), 2669–2676.

[899] M. H. Pirenne. “Dark-Adaptation and Night Vision.” In The Eye, Volume 2, edited by H. Davson, pp. 93–122. New York: Academic Press, 1962.

[900] M. H. Pirenne. “Liminal Brightness Increments.” In The Eye, Volume 2, edited by H. Davson, pp. 159–174. New York: Academic Press, 1962.

[901] M. H. Pirenne. Vision and the Eye, Second edition. London: Associated Book Publishers, 1967.

[902] F. H. G. Pitt and E. W. H. Selwyn. “Colour of Outdoor Photographic Objects.” The Photographic Journal 78 (1938), 115–121.

[903] F. H. G. Pitt. “Characteristics of Dichromatic Vision with an Appendix on Anomalous Trichromatic Vision.” In Great Britain Medical Report Series, 200. London: His Majesty’s Stationery Office, 1935.

[904] D. G. Pitts. “The Ocular Effects of Ultraviolet Radiation.” American Journal of Optometry and Physiological Optics 55 (1978), 19–35.

[905] G. N. Plass, T. J. Humphreys, and G. W. Kattawar. “Color of the Ocean.” Applied Optics 17:9 (1978), 1432–1446.

[906] W. T. Plummer. “Photographic Shutters: Better Pictures with a Reconsideration of Shutter Efficiency.” Applied Optics 16:7 (1917), 1914–1917.

[907] I. Pobbaravski. “Methods of Computing Inks Amount to Produce a Scale of Neutrals for Photomechanical Reproduction.” In Proceedings of the Technical Association of the Graphical Arts, pp. 10–33. Sewickley, PA: Technical Association of the Graphic Arts, 1966.

[908] A. B. Poirson and B. A. Wandell. “The Appearance of Colored Patterns: Pattern-Color Separability.” Journal of the Optical Society of America A 10:12 (1993), 2458–2471.

[909] A. Poirson and B. Wandell. “Pattern-Color Separable Pathways Predicts Sensitivity to Simple Colored Patterns.” Vision Research 35:2 (1996), 239–254.

[910] J. Pokorny, V. C. Smith, G. Verriest, and A. J. L. G. Pinkers. Congenital and Acquired Color Vision Defects. New York: Grune and Stratton, 1979.

[911] J. Pokorny, V. C. Smith, and M. Wesner. “Variability in Cone Populations and Implications.” In From Pigments to Perception, edited by A. Valberg and B. B. Lee, pp. 23–34. New York:Plenum, 1991.

[912] F. Pollak. “Masking for Halftone.” Journal of Photographic Science 3 (1955), 180–188.

[913] F. Pollak. “The Relationship between the Densities and Dot Size of Halftone Multicolor Images.” Journal of Photographic Science 3 (1955), 112–116.

[914] F. Pollak. “New Thoughts on Halftone Color Masking.” Penrose Annual 50 (1956), 106–110.

[915] S. L. Polyak. The Vertebrate Visual System. Chicago, IL: Chicago University Press, 1957.

[916] M. Ponzo. “Rapports entre quelque illusions visuelles de contraste angulaire et l’appr´eciationde grandeur des astres `a l’horizon.” Archives Italiennes de Biologie 58 (1913), 327–329.

[917] R. M. Pope and E. S. Fry. “Absorption Spectrum (380–700 nm) of Pure Water. II. Integrating Cavity Measurements.” Applied Optics 36:33 (1997), 8710–8723.

[918] D. Pope. “The Elusive Blue Laser.” The Industrial Physicist 3:3 (1997), 16.

[919] J. Portilla and E. P. Simoncelli. “A Parametric Texture Model based on Joint Statistics of Complex Wavelet Coefficients.” International Journal of Computer Vision 40:1 (2000), 49–71. Available online ({www.cns.nyu.edu/∼eero/publications.html}).

[920] D. L. Post and C. S. Calhoun. “An eEvaluation of Methods for Producing Desired Colors on CRT Monitors.” Color Research and Application 14:4 (1989), 172–186.

[921] P. Poulin and A. Fournier. “A Model for Anisotropic Reflection.” Computer Graphics (Proceedings of SIGGRAPH ’90) 24:4 (1990), 273–282.

[922] C. Poynton. “Color FAQ.”, 2002. Available online (Color FAQ - Abstract).

[923] C. Poynton. Digital Video and HDTV: Algorithms and Interfaces. San Francisco: Morgan Kaufmann Publishers, 2003.

[924] O. Prache. “Active Matrix Molecular OLED Microdisplays.” Displays 22 (2001), 49–56.

[925] A. J. Preetham, P. Shirley, and B. Smits. “A Practical Analytic Model for Daylight.” In Proceedings of SIGGRAPH ’99, Computer Graphics Proceedings, Annual Conference Series, pp. 91–100. Reading, MA: Addison-Wesley Longman, 1999.

[926] W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery. Numerical Recipes in C: The Art of Scientific Computing, Second edition. Cambridge, UK: Cambridge University Press, 1992.

[927] I. G. Priest. “A Proposed Scale for Use in Specifying the Chromaticity of Incandescent Illuminants and Various Phases of Daylight.” Journal of the Optical Society of America 23 (1933), 141–141.

[928] E. N. Pugh Jr. and T. D. Lamb. “Phototransduction in Vertebrate Rods and Cones: Molecular Mechanisms of Amplification, Recovery and Light Adaptation.” In Handbook of Biological Physics, Volume 3, edited by D. G. S. et al., pp. 183–254. Amsterdam: Elsevier, 2000.

[929] M. D. Purdy. “Spectral Hue as a Fucntion of Intensity.” American Journal of Psychology 43 (1931), 541–559.

[930] J. E. Purkinje. Neue Beitr¨age zur Kenntnis des Sehens in subjectiver Hinsicht. Berlin: G Reimer, 1825.

[931] Z. Rahman, D. J. Jobson, and G. A. Woodell. “A Multiscale Retinex for Color Rendition and Dynamic Range Compression.” In Proceedings of the SPIE 2847 (Applications of Digital Image Processing XIX). Bellingham, WA: SPIE, 1996.

[932] Z. Rahman, G. A. Woodell, and D. J. Jobson. “A Comparison of the Multiscale Retinex with Other Image Enhancement Techniques.” In IS&T’s 50th Annual Conference: A Celebration of All Imaging, pp. 426–431. Springfield, VA: Society for Imaging Science and Technology, 1997.

[933] S. J. M. Rainville and F. A. A. Kingdom. “Spatial-Scale Contribution to the Detection of Mirror Symmetry in Fractal Noise.” Journal of the Optical Society of America A 16:9 (1999), 2112–2123.

[934] V. S. Ramachandran. “Perception of Shape from Shading.” Nature 331:6152 (1988), 163–166.

[935] S. R´amon y Cajal. “La r´etine des vert´ebr´es.” Cellule 9 (1893), 119–255.

[936] A. Rapaport, J. Milliez, M. Bass, A. Cassanho, and H. Jenssen. “Review of the Properties of Up-Conversion Phosphors for New Emissive Displays.” SID Symposium Digest of Technical Papers 35:1 (2004), 1237–1239.

[937] A. Rapaport, J. Milliez, M. Bass, A. Cassanho, and H. Jenssen. “Review of the Properties of Up-Conversion Phosphors for New Emissive Displays.” IEEE/OSA Journal of Display Technology 2:1 (2006), 68–78.

[938] K. Rasche, R. Geist, and J. Westall. “Detail Preserving Reproduction of Color Images for Monochromats and Dichromats.” IEEE Computer Graphics and Applications 25:3 (2005), 22– 30.

[939] K. Rasche, R. Geist, and J. Westall. “Re-Coloring Images for Gamuts of Lower Dimension.” Eurographic Forum 24:3 (2005), 423–432.

[940] D. D. Rathman, D. M. O’Mara, M. K. Rose, R. M. Osgood III, and R. K. Reich. “Dynamic Response of an Electronically Shuttered CCD Imager.” IEEE Transactions on Electron Devices 51:6.

[941] M. S. Rea, editor. The IESNA Lighting Handbook: Reference and Application, Ninth edition. New York: The Illuminating Engineering Society of North America, 2000.

[942] C. Redies and L. Spillmann. “The Neon Color Effect in the Ehrenstein Illusion.” Perception 10:6 (1981), 667–681.

[943] C. Redies, L. Spillmann, and K. Kunz. “Colored Neon Flanks and Line Gap Enhancement.” Vision Research 24:10 (1984), 1301–1309.

[944] B. C. Regan, C. Julliot, B. Simmen, F. Vi´enot, P. Charles-Dominique, and J. D. Mollon. “Fruits, Foliage and the Evolution of Primate Colour Vision.” Philosophical Transactions of the Royal Society of London, B 356:1407 (2001), 229–283.

[945] T. Regier, P. Kay, and N. Khetarpal. “Color Naming Reflects Optimal Partitions of Color Space.” Proceedings of the National Academy of Sciences 104:4 (2007), 1436–1441.

[946] R. C. Reid and R. M. Shapley. “Spatial Structure of Cone Inputs to Receptive Fields in Primate Lateral Geniculate Nucleus.” Nature 356:6371 (1992), 716–718.

[947] R. C. Reid and R. M. Shapley. “Space and Time Maps of Cone Photoreceptor Signals in Macaque Lateral Geniculate Nucleus.” Journal of Neuroscience 22:14 (2002), 6158–6175.

[948] E. Reinhard and K. Devlin. “Dynamic Range Reduction Inspired by Photoreceptor Physiology.” IEEE Transactions on Visualization and Computer Graphics 11:1 (2005), 13–24.

[949] E. Reinhard, M. Ashikhmin, B. Gooch, and P. Shirley. “Color Transfer between Images.” IEEE Computer Graphics and Applications 21 (2001), 34–41.

[950] E. Reinhard, M. Stark, P. Shirley, and J. Ferwerda. “Photographic Tone Reproduction for Digital Images.” ACM Transactions on Graphics 21:3 (2002), 267–276.

[951] E. Reinhard, A. O. Aky¨uz, M. Colbert, C. E. Hughes, and M. O’Connor. “Real-Time Color Blending of Rendered and Captured Video.” In Proceedings of the Interservice/Industry Training, Simulation and Education Conference. Arlington, VA: National Defense Industrial Association, 2004.

[952] E. Reinhard, G. Ward, S. Pattanaik, and P. Debevec. High Dynamic Range Imaging: Acquisition, Display and Image-Based Lighting. San Francisco: Morgan Kaufmann Publishers, 2005.

[953] E. Reinhard, P. Debevec, G. Ward, K. Myszkowski, H. Seetzen, D. Hess, G. McTaggart, and H. Zargarpour. “High Dynamic Range Imaging: Theory and Practice.”, 2006. (SIGGRAPH 2006 Course).

[954] E. Reinhard. “Parameter Estimation for Photographic Tone Reproduction.” journal of graphics tools 7:1 (2003), 45–51.

[955] A. G. Rempel, M. Trentacoste, H. Seetzen, H. D. Young, W. Heidrich, L. Whitehead, and G. Ward. “Ldr2Hdr: On-the-fly Reverse Tone Mapping of Legacy Video and Photographs.” ACM Transactions on Graphics 26:3 (2007), 39–1 – 39–6.

[956] E. Renner. Pinhole Photography: Rediscovering a Historic Technique, Third edition. Focal Press, 2004.

[957] M. Rezak and L. A. Benevento. “A Comparison of the Organization of the Projections of= the Dorsal Lateral Geniculate Nucleus, the Inferior Pulvinar and Adjacent Lateral Pulvinar to Primary Visual Cortex (Area 17) in the Macaque Monkey.” Brain Research 167 (1979), 19–40.

[958] P. Rheingans. “Color, Change, and Control for Quantitative Data Display.” In Proceedings of IEEE Visualization, pp. 252–258. Los Alamitos, CA: IEEE Press, 1999.

[959] P. Rheingans. “Task-Based Color Scale Design.” In SPIE Proceedings (Applied Image and Pattern Recognition), pp. 33–43. Bellingham, WA: SPIE, 1999.

[960] D. C. Rich. “Light Sources and Illuminants: How to Standardize Retail Lighting.” Textile Chemist and Colorist 30:1 (1998), 8–12.

[961] D. W. Rickman and N. C. Brecha. “Morphologies of Somatostatin-Immunoreactive Neurons in the Rabbit Retina.” In Neurobiology of the Inner Retina, H31, edited by R. Weiler and N. N. Osborne, H31, pp. 461–468. Berlin: Springer-Verlag, 1989.

[962] L. A. Riggs. “Visual Acuity.” In Vision and Visual Perception, edited by C. H. Graham. New York: John Wiley and Sons, Inc., 1965.

[963] K. Riley, D. S. Ebert, M. Kraus, J. Tessendorf, and C. Hansen. “Efficient Rendering of Atmospheric Phenomena.” In Eurographics Symposium on Rendering, edited by H. W. Jensen and A. Keller, pp. 375–386. Aire-la-Ville, Switzerland: Eurographics Association, 2004.

[964] D. L. Ringach, R. M. Shapley, and M. J. Hawken. “Orientation Selectivity in Macaque V1: Diversity and Laminar Dependence.” Journal of Neuroscience 22:13 (2002), 5639–5651.

[965] A. Rizzi, C. Gatta, and D. Marini. “From Retinex to Automatic Color Equalization: Issues in Developing a New Algorithm for Unsupervised Color Equalization.” SPIE Journal of Electronic Imaging 13:1 (2004), 75–84.

[966] P. K. Robertson and J. F. O’Callaghan. “The Generation of Color Sequences for Univariate and Bivariate Mapping.” IEEE Computer Graphics and Applications 6:2 (1986), 24–32.

[967] M. Robertson, S. Borman, and R. Stevenson. “Estimation-Theoretic Approach to Dynamic Range Enhancement using Multiple Exposures.” Journal of Electronic Imaging 12:2 (2003), 219–228.

[968] A. H. Robins. Perspectives on Human Pigmentation. Cambridge, UK: Cambridge University Press, 1991.

[969] D. A. Robinson. “The Mechanics of Human Saccadic Eye Movements.” Journal of Physiology 174 (1964), 245–264.

[970] K. S. Rockland, K. S. Saleem, and K. Tanaka. “Divergent Feedback Connections from Areas V4 and TEO in the Macaque.” Visual Neuroscience 11 (1994), 579–600.

[971] K. S. Rockland. “Elements of Cortical Architecture Revisited.” In Cerebral Cortex, edited by K. S. Rockland, J. H. Kaas, and A. Peters. New York: Plenum, 1997.

[972] R. W. Rodieck. “The Primate Retina.” Comparative Primate Biology 4 (1988), 203–278.

[973] H. R. Rodman, K. M. Sorenson, A. J. Shim, and D. P. Hexter. “Calbindin Immunoreactivity in the Geniculo-Extrastriate System of the Macaque: Implications for Heterogeneity in the Koniocellular Pathway and Recovery from Cortical Damage.” Journal of Comparative Neurology 431:2 (2001), 168–181.

[974] B. E. Rogowitz and A. D. Kalvin. “The ’Which Blair Project:’ A Quick Visual Method for Evaluating Perceptual Color Maps.” In Proceedings of IEEE Visualization, pp. 183–190. Los Alamitos, CA: IEEE Computer Society, 2001.

[975] J. Roizen and R. Lipkin. “SECAM: An End to Crosstalk.” Electronics 38 (1965), 104–105.

[976] A. K. Romney and R. G. D’Andrade. “Modeling Lateral Geniculate Nucleus Cell Response Spectra and Munsell Reflectance Spectra with Cone Sensitivity Curves.” Proceedings of the National Academy of Sciences of the United States of America 102:45 (2005), 16512–16517.

[977] A. Roorda and D. R. Williams. “The Arrangement of the Three Cone Classes in the Living Human Eye.” Nature 397:6719 (1999), 520–522.

[978] E. Rosche. “Natural Categories.” Cognitive Psychology 4:3 (1973), 328–350.

[979] A. Rose. “The Relative Sensitivities of Television Pick-Up Tubes, Photographics Film, and the Human Eye.” In Proceedings of the Institute of Radio Engineers, 293–300, 293–300. Washington, DC: IEEE Press, 1942.

[980] M. Rosenblatt. “Remarks on Some Nonparametric Estimates of Density Functions.” Annals of\ Mathematical Statistics 27:3 (1956), 832–837.

[981] S. Roth and W. Caldwell. “Four Primary Color Projection Display.” SID Symposium Digest of Technical Papers 36:1 (2005), 1818–1821.

[982] J. M. Rubin and W. A. Richards. “Color Vision and Image Intensities: When Are Changes Material?” Biological Cybernetics 45:3 (1982), 215–226.

[983] D. L. Ruderman and W. Bialek. “Statistics of Natural Images: Scaling in the Woods.” Physical Review Letters 73:6 (1994), 814–817.

[984] D. L. Ruderman, T. W. Cronin, and C.-C. Chiao. “Statistics of Cone Responses to Natural Images: Implications for Visual Coding.” Journal of the Optical Society of America A 15:8 (1998), 2036–2045.

[985] D. L. Ruderman. “Origins of Scaling in Natural Images.” Vision Research 37 (1997), 3385– 3398.

[986] D. L. Ruderman. “The Statistics of Natural Images.” Network: Computation in Neural Systems 5:4 (1997), 517–548.

[987] W. A. H. Rushton. “Visual Pigments in Man.” In Handbook of Sensory Physiology, VII/1, edited by H. J. A. Dartnal. New York: Springer-Verlag, 1972.

[988] S. M. Sagar. “Somatostatin-Like Immunoreactive Material in the Rabbit Retina: Immunohistochemical staining using monoclonal antibodies.” Journal of Comparative Neurology 266:2 (1987), 291–299. 

[989] R. Saito and H. Kotera. “Extraction of Image Gamut Surface and Calculations of Its Volume.” In Proceedings of the 8th IS&T/SID Color Imaging Conference, pp. 330–334. Springfield, VA: Society for Imaging Science and Technology, 2000.

[990] E. Salvador, A. Cavallaro, and T. Ebrahimi. “Shadow Identification and Classification using Invariant Color Models.” In International Conference on Acoustics, Speech, and Signal Processing (ICASSP), Volume 3, pp. 1545–1548. Washington, DC: IEEE Press, 2001.

[991] C. D. Salzman, C. M. Murasugi, K. H. Britten, and W. T. Newsome. “Microstimulation in Visual Area MT: Effects on Direction Discrimination Performance.” Journal of Neuroscience 12:6 (1992), 2331–2355.

[992] F. Samadzadegan, M. Hahn, M. Sarpulaki, and N. Mostofi. “Geometric and Radiometric Evaluation of the Potential of a High Resolution CMOS-Camera.” In Proceedings of the International Society for Photogrammetry and Remote Sensing (ISPRS), XXXV, B3, XXXV, B3, pp. 488–493. Istanbul, Turkey, 2004.

[993] J. H. Sandell and P. H. Schiller. “Effect of Cooling Area 18 on Striate Cortex Cells in the Squirrel Monkey.” Journal of Neurophysiology 48:1 (1982), 38–48.

[994] G. Sapiro. “Color and Illuminant Voting.” IEEE Transactions on Pattern Analysis and Machine Intelligence 21 (1999), 1210–1215.

[995] M. Sasaki, M. Mase, S. Kawahito, and Y. Tadokoro. “A Wide-Dynamic-Range CMOS Image Sensor based on Multiple Short Exposure-Time Readout with Multiple-Resolution Column Parallel ADC.” IEEE Sensors Journal 7:1 (2007), 151–158.

[996] K. Sassen, N. C. Knight, Y. Takano, and A. J. Heymsfield. “Effects of Ice-Crystal Structure on Halo Formation: Cirrus Cloud Experimental and Ray-Tracing Modeling Studies.” Applied Optics 33:21 (1994), 4590–4601.

[997] K. Sassen. “Halos in Cirrus Clouds: Why Are Classic Displays So Rare?” Applied Optics 44:27 (2005), 5684–5687.

[998] Y. Sato, M. D. Wheeler, and K. Ikeuchi. “Object Shape and Reflectance Modeling from Observation.” In Proceedings of SIGGRAPH’97, Computer Graphics Proceedings, Annual Conference Series, pp. 379–387. Reading, MA: Addison-Wesley, 1997.

[999] Y. Sato, K. Amemiya, and M. Uchidoi. “Recent Progress in Device Performance and Picture Quality of Color Plasma Displays.” Journal of the Society for Information Display 10 (2002), 17–23.

[1000] K. Sato. “Image-Processing Algorithms.” In Image Sensors and Signal Processing for Digital Still Cameras, edited by J. Nakamura, pp. 223–253. Boca Raton, FL: Taylor and Francis, 2006.

[1001] A. van der Schaaf. “Natural Image Statistics and Visual Processing.” Ph.D. thesis, Rijksuniversiteit Groningen, The Netherlands, 1998. Available online ({http://www.ub.rug.nl/eldoc/dis/ science/a.v.d.schaaf/}).

[1002] J. Schanda. “Current CIE Work to Achieve Physiologically-Correct Color Metrics.” In Color Vision: Perspecitves from Different Disciplines, edited by W. Backhaus, R. Kliegl, and J. S. Werner, pp. 307–318. Berlin: Walter de Gruyter, 1998.

[1003] R. Schettini, G. Ciocca, and I. Gagliardi. “Content-Based Color Image Retrieval with Relevance Feedback.” In Proceedings of the International Conference on Image Processing, pp. 27AS2.8–27AS2.8. Los Alamitos, CA: IEEE Computer Society, 1999.

[1004] H. M. Schey. Div, Grad, Curl, and All That. New York: W. W. Norton and Company, 1973.

[1005] C. Schlick. “A Customizable Reflectance Model for Everyday Rendering.” In Fourth Eurographics Workshop on Rendering, pp. 73–84. Aire-la-Ville, Switzerland: Eurographics Association, 1993.

[1006] C. Schlick. “Fast Alternatives to Perlin’s Bias and Gain Functions.” In Graphics Gems IV, pp. 401–403. San Diego: Academic Press, 1994.

[1007] C. Schlick. “Quantization Techniques for the Visualization of High Dynamic Range Pictures.” In Photorealistic Rendering Techniques, edited by P. Shirley, G. Sakas, and S. M¨uller, pp. 7–20. Berlin: Springer-Verlag, 1994.

[1008] M. Schmolesky. “The Primary Visual Cortex.”, 2006. Available online (http://webvision.med. utah.edu/VisualCortex.html).

[1009] J. L. Schnapf, T. W. Kraft, and D. A. Baylor. “Spectral Sensitivity of Human Cone Photoreceptors.” Nature 325:6103 (1987), 439–441.

[1010] J. L. Schnapf, T. W. Kraft, B. J. Nunn, and D. A. Baylor. “Spectral Sensitivity of Primate Photoreceptors.” Visual Neuroscience 1 (1988), 255–261.

[1011] M. Schrauf, B. Lingelbach, E. Lingelbach, and E. R. Wist. “The Hermann Grid and the Scintillation Effect.” Perception 24, supplement (1995), 88–89.

[1012] M. Schrauf, B. Lingelbach, and E. R. Wist. “The Scintillating Grid Illusion.” Vision Research 37:8 (1997), 1033–1038.

[1013] P. Schr¨oder and W. Sweldens. “Spherical Wavelets: Efficiently Representing Functions on the Sphere.” In Proceedings of SIGGRAPH ’95, Computer Graphics Proceedings, Annual Conference Series, pp. 161–172. Reading, MA: Addison-Wesley, 1995.

[1014] E. F. Schubert and J. K. Kim. “Solid-State Light Sources Getting Smart.” Science 308 (2005), 1274–1278.

[1015] M. Schultze. “Zur Anatomie und Physiologie der Retina.” Archiv f¨ur mikroskopische Anatomie und Entwicklungsmechanik 2 (1866), 165–286.

[1016] A. J. Schwab. Field Theory Concepts: Electromagnetic Fields, Maxwell’s Equations, Grad, Curl, Div, etc. Berlin: Springer-Verlag, 1988.

[1017] E. Schwartz, R. B. Tootell, M. S. Silverman, E. Switkes, and R. L. de Valois. “On the Mathematical Structure of the Visuotopic Mapping of Macaque Striate Cortex.” Science 227 (1985), 1065–1066.

[1018] E. A. Schwartz. “Voltage Noise Observed in Rods of the Turtle Retina.” Journal of Physiology 272 (1977), 217–246.

[1019] S. H. Schwartz. Visual Perception: A Clinical Orientation. New York: McGraw-Hill, 2004.

[1020] H. Seetzen, L. A. Whitehead, and G. Ward. “A High Dynamic Range Display using Low and High Resolution Modulators.” SID Symposium Digest of Technical Papers 34:1 (2003), 1450–1453.

[1021] H. Seetzen, W. Heidrich, W. Stuerzlinger, G. Ward, L. Whitehead, M. Trentacoste, A. Ghosh, and A. Vorozcovs. “High Dynamic Range Display Systems.” ACM Transactions on Graphics 23:3 (2004), 760–768.

[1022] H. Seetzen, H. Li, G. Ward, L. Whitehead, and W. Heidrich. “Guidelines for Contrast, Brightness, and Amplitude Resolution of Displays.” In Society for Information Display (SID) Digest, pp. 1229–1233, 2006.

[1023] H. Seetzen, S. Makki, H. Ip, T. Wan, V. Kwong, G. Ward, W. Heidrich, and L. Whitehead. “Self-Calibrating Wide Color Gamut High Dynamic Range Display.” In Human Vision and Electronic Imaging XII, 6492, edited by B. E. Rogowitz, T. N. Pappas, and S. J. Daly, 6492, p. 64920Z. SPIE, 2007.

[1024] R. G. Seippel. Optoelectronics for Technicians and Engineering. Englewood Cliffs, NJ: Prentice Hall, 1989.

[1025] C. C. Semmelroth. “Prediction of Lightness and Brightness on Different Backgrounds.” Journal of the Optical Society of America 60 (1970), 1685–1689.

[1026] A. Sempel and M. B¨uchel. “Design Aspects of Low Power Polymer/OLED Passive-Matrix Displays.” Organic Electronics 3 (2002), 89–92.

[1027] J. Sethian. “A Fast Marching Level Set Method for Monotonically Advancing Fronts.” Proceedings of the National Academy of Sciences of the United States of America 93 (1996), 1591– 1595.

[1028] S. A. Shafer. “Using Color to Separate Reflection Components.” Color Research and Application 10:4 (1985), 210–218.

[1029] S. E. Shaheen, G. E. Jabbour, B. Kippelen, N. Peyghambarian, J. D. Anderson, S. R. Marder,= N. R. Armstrong, E. Bellmann, and R. H. Grubbs. “Organic Light-Emitting Diode with 20 lm/W Efficiency using a Triphenyldiamine Side-Group Polymer as the Hole Transport Layer.” Applied Physics Letters 74:21 (1999), 3212–3214.

[1030] R. Shapley and M. Hawken. “Neural Mechanisms for Color Perception in the Primary Visual Cortex.” Current Opinion in Neurobiology 12:4 (2002), 426–432.

[1031] R. Shapley and J. Victor. “Hyperacuity in Cat Retinal Ganglion Cells.” Science 231 (1986), 999–1002.

[1032] R. Shapley. “Visual Sensitivity and Parallel Retinocortical Channels.” Annual Review of Psychology 41 (1990), 635–658.

[1033] R. Shapley. “A New View of the Primary Visual Cortex.” Neural Networks 17:5–6 (2004), 615–623.

[1034] G. Sharma and H. J. Trussell. “Digital Color Imaging.” IEEE Transactions on Image Processing 6:7 (1997), 901–932.

[1035] G. Sharma. “LCDs Versus CRTs: Color Calibration and Gamut Considerations.” Proceedings of the IEEE: Special Issue on Flat Panel Display Technologies 90:4 (2002), 605–622.

[1036] L. T. Sharpe, H. J. Andrew Stockman, and J. Nathans. “Opsin Genes, Cone Photopigments, Color Vision and Color Blindness.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. T. Sharpe, pp. 3–51. Cambridge, UK: Cambridge University Press, 1999.

[1037] J. H. Shaw. “Solar Radiation.” The Ohio Journal of Science 53:5 (1953), 258–271.

[1038] S. L. Sherwood, editor. The Nature of Psychology: A Selection of Papers, Essays and Other Writings by Kenneth J W Craik. Cambridge: Cambridge University Press, 1966.

[1039] S. K. Shevell and J. Wei. “Chromatic Induction: Border Contrast or Adaptation to Surrounding Light.” Vision Research 38 (1998), 1561–1566.

[1040] J. Shinar, editor. Organic Light-Emitting Devices: A Survey. New York: Springer-Verlag, 2003.

[1041] S. Shipp and S. Zeki. “Segregation of Pathways Leading from Area V2 to Areas V4 and V5 of Macaque Monkey Visual Cortex.” Nature 315:6017 (1985), 322–324.

[1042] P. Shirley and R. K. Morley. Realistic Ray Tracing, Second edition. Wellesley, Massachusetts: A K Peters, 2003.

[1043] P. Shirley, M. Ashikhmin, S. R. Marschner, E. Reinhard, K. Sung, W. B. Thompson, and P. Willemsen. Fundamentals of Computer Graphics, Second edition. Wellesley, Massachusetts: A K Peters, 2005.

[1044] A. Shmuel, M. Korman, A. Sterkin, M. Harel, S. Ullman, R. Malach, and A. Grinvald. “Retinotopic Axis Specificity and Selective Clustering of Feedback Projections from V2 to V1= in the Owl Monkey.” Journal of Neuroscience 25:8 (2005), 2117–2131.

[1045] A. E. Siegman. Lasers. Sausalito, CA: University Science Books, 1986.

[1046] F. X. Sillion and C. Puech. Radiosity and Global Illumination. San Francisco, CA: Morgan Kaufmann Publishers, Inc., 1994.

[1047] E. P. Simoncelli and J. Portilla. “Texture Characterization via Joint Statistics of Wavelet Coefficient Magnitudes.” In Fifth IEEE Int’l Conf on Image Processing, Volume I, pp. 62–66. Washington, DC: IEEE Press, 1998.

[1048] E. P. Simoncelli. “Bayesian Denoising of Visual Images in the Wavelet Domain.” In Bayesian Inference in Wavelet Based Models, Lecture Notes in Statistics 141, edited by P. M¨uller and B. Vidakovic, Chapter 18, pp. 291–308. New York: Springer-Verlag, 1999.

[1049] E. P. Simoncelli. “Modelling the Joint Statistics of Images in the Wavelet Domain.” In Proceedings of the SPIE 3818 (44th SPIE Annual Meeting), pp. 188–195. Bellingham, WA: SPIE, 1999.

[1050] L. C. Sincich and J. C. Horton. “Divided by Cytochrome Oxydase: A Map of the Projections from V1 to V2 in Macaques.” Science 295:5560 (2002), 1734–1737.

[1051] L. C. Sincich and J. C. Horton. “The Circuitry of V1 and V2: Integration of Color, Form and Motion.” Annual Review of Neuroscience 28 (2005), 303–326.

[1052] L. C. Sincich, K. F. Park, M. J. Wohlgemuth, and J. C. Horton. “Bypassing V1: A Direct Geniculate Input to Area MT.” Nature Neuroscience 7:10 (2004), 1123–1128.

[1053] L. Sivik. “Systems for Descriptive Colour Notations — Implications of Definitions and Methodology.” Farbe 40 (1994), 37–49.

[1054] G. Smith and D. A. Atchison. The Eye and Visual Optical Instruments. New York: Cambridge University Press, 1997.

[1055] R. C. Smith and K. A. Baker. “Optical Properties of the Clearest Natural Waters (200-800 nm).” Applied Optics 20:2 (1981), 177–184.

[1056] R. C. Smith and J. E. Tyler. “Optical Properties of Clear Natural Water.” Journal of the Optical Society of America 57:5 (1967), 589–601.

[1057] V. C. Smith, J. Pokorny, B. B. Lee, and D. M. Dacey. “Primate Horizontal Cell Dynamics: An Analysis of Sensitivity Regulation in the Outer Retina.” Journal of Neurophysiology 85 (2001), 545–558.

[1058] K. Smith, G. Krawczyk, K. Myszkowski, and H.-P. Seidel. “Beyond Tone Mapping: Enhanced Depiction of Tone Mapped HDR Images.” Computer Graphics Forum 25:3 (2006), 427–438.

[1059] R. Smith-Gillespie. “Design Considerations for LED Backlights in Large Format Color LCDs.” In LEDs in Displays — SID Technical Symposium, 2006.

[1060] H. M. Smith. Principles of Holography, Second edition. New York, NY: John Wiley and Sons,, Inc., 1975.

[1061] W. J. Smith. Modern Optical Engineering, Third edition. New York: McGraw-Hill, 2000.

[1062] W. J. Smith. Modern Lens Design, Second edition. New York: McGraw Hill, 2005.

[1063] B. Smits. “An RGB to Spectrum Conversion for Reflectances.” journal of graphics tools 4:4 (1999), 11–22.

[1064] E. Snitzer. “Cylindrical Dielectric Waveguide Modes.” Journal of the Optical Society of America 51:5 (1961), 491–498.

[1065] D. M. Snodderly, J. D. Auran, and F. C. Delori. “The Macular Pigment II: Spatial Distribution in Primate Retinas.” Investigative Ophthalmology and Visual Science 25:6 (1984), 674–685.

[1066] A. Sobel. “Television’s Bright New Technology.” Scientific American.

[1067] Society of Dyers and Colourists. Colour Index. Bradford, UK: Society of Dyers and Colourists, 1971. Available online (http://www.colour-index.org).

[1068] F. M. Sogandares and E. S. Fry. “Absorption Spectrum (340–640 nm) of Pure Water. II. Photothermal Measurements.” Applied Optics 36:33 (1997), 8699–8709.

[1069] J. A. Solomon, G. Sperling, and C. Chubb. “The Lateral Inhibition of Perceived Contrast Is Indifferent to On-Center/Off-Center Segregation, but Specific to Orientation.” Vision Research 33:18 (1993), 2671–2683.

[1070] X. Song, G. M. Johnson, and M. D. Fairchild. “Minimizing the Perception of Chromatic Noise in Digital Images.” In IS&T/SID 12th Color Imaging Conference, pp. 340–346. Springfield, VA: Society for Imaging Science and Technology, 2004.

[1071] M. Sonka, V. Hlavac, and R. Boyle. Image Processing, Analysis, and Machine Vision, Second edition. Pacific Grove, CA: PWS Publishing, 1999.

[1072] K. E. Spaulding, E. J. Giorgianni, and G. Woolfe. “Reference Input/Output Medium Metric RGB Color Encoding (RIMM-ROMM RGB).” In PICS2000: Image Processing, Image Quality, Image Capture, Systems Conference, pp. 155–163. Springfield, VA: Society for Imaging Science and Technology, 2000.

[1073] K. E. Spauling, G. J. Woolfe, and R. L. Joshi. “Extending the Color Gamut and Dynamic Range of an sRGB Image using a Residual Image.” Color Research and Application 25:4 (2003), 251–266.

[1074] N. Speranskaya. “Determination of Spectrum Color Co-ordinates for Twenty-Seven Normal Observers.” Optics Spectrosc. 7 (1959), 424–428.

[1075] L. Spillmann and J. S. Werner, editors. Visual Perception: The Neurological Foundations. San Diego: Academic Press, 1990.

[1076] L. Spillmann. “The Hermann Grid Illusion: A Tool for Studying Human Receptive Field Organization.” Perception 23 (1994), 691–708.

[1077] B. Stabell and U. Stabell. “Chromatic Rod-Cone Interaction during Dark Adaptation.” Journal of the Optical Society of America A 15:11 (1998), 2809–2815.

[1078] B. Stabell and U. Stabell. “Effects of Rod Activity on Color Perception with Light Adaptation.” Journal of the Optical Society of America A 19:7 (2002), 1248–1258.

[1079] J. Stam. “Stable Fluids.” In Proceedings SIGGRAPH ’99, Computer Graphics Proceedings,Annual Conference Series, pp. 121–128. Reading, MA: Addison-Wesley Longman, 1999.

[1080] J. Starck, E. Pantin, and F. Murtagh. “Deconvolution in Astronomy: A Review.” Publications of the Astronomical Society of the Pacific 114 (2002), 1051–1069.

[1081] O. N. Stavroudis. “Orthomic Systems of Rays in Inhomogeneous Isotropic Media.” Applied Optics 10:2 (1971), 260–263.

[1082] O. N. Stavroudis. The Optics of Rays, Wavefronts and Caustics. New York: Academic Press, 1972.

[1083] D. A. Steigerwald, J. C. Bhat, D. Collins, R. M. Fletcher, M. O. Holcomb, M. J. Ludowise, P. S. Martin, and S. L. Rudaz. “Illumination with Solid State Lighting Technology.” IEEE Journal on Selected Topics in Quantum Electronics 8:2 (2002), 310–320.

[1084] J. Steinhoff and D. Underhill. “Modifications of the Euler Equations for “Vorticity Confinement”: Application to the Computation of Interacting Vortex Rings.” Physics of Fluids 6:8 (1994), 2738–2744.

[1085] J. C. Stevens and S. S. Stevens. “Brightness fFunctions: Effects of Adaptation.” Journal of the Optical Society of America 53 (1963), 375–385.

[1086] S. S. Stevens. “To Honor Fechner and Repeal His Law.” Science 133:3446 (1961), 80–86.

[1087] W. Stiles and J. Burch. “N.P.L Colour-Matching Investigation: Final Report.” Optica Acta 6 (1959), 1–26.

[1088] W. S. Stiles and B. H. Crawford. “The Luminous Efficiency of Rays Entering the Eye Pupil at Different Points.” Proceedings of the Royal Society of London, B 112:778 (1933), 428–450.

[1089] W. S. Stiles. “The Luminous Sensitivity of Monochromatic Rays Entering the Eye Pupil at Different Points and a New Colour Effect.” Proceedings of the Royal Society of London, B 123:830 (1937), 64–118.

[1090] A. Stimson. Photometry and Radiometry for Engineers. New York: John Wiley and Sons, Inc., 1974.

[1091] A. Stockman and L. T. Sharpe. “The Spectral Sensitivities of the Middle- and Long Wavelength-Sensitive Cones Derived from Measurements on Observers of Known Genotype.” Vision Research 40:13 (2000), 1711–1737.

[1092] A. Stockman, D. I. MacLeod, and N. E. Johnson. “Spectral Sensitivities of the Human Cones.” Journal of the Optical Society of America A 10:12 (1993), 2491–2521.

[1093] E. J. Stollnitz, V. Ostromoukhov, and D. H. Salesin. “Reproducing Color Images using Custom Inks.” In Proceedings SIGGRAPH ’98, Computer Graphics Proceedings, Annual Conference Series, pp. 267–274. Reading, MA: Addison-Wesley, 1998.

[1094] R. I. Stolyarevskaya. “The 25th Meeting of CIE and Measurements on LED Optical Parameters.” Measurement Techniques 47:3 (2004), 316–320.

[1095] M. C. Stone, W. B. Cowan, and J. C. Beatty. “Color Gamut Mapping and the Printing of= gital Color Images.” ACM Transactions on Graphics 7:4 (1988), 249–292.

[1096] M. C. Stone. “Color Balancing Experimental Projection Displays.” In Proceedings of the 9th olor Imaging Conference: Color Science and Engineering: Systems, Technologies, Applications, pp. 342–347. Springfield, VA: Society for Imaging Science and Technology, 2001.

[1097] M. C. Stone. A Field Guide to Digital Color. Natick, MA: A K Peters, 2003.

[1098] M. St¨orring, E. Granum, and H. J. Andersen. “Estimation of the Illuminant Colour using Highlights from Human Skin.” In International Conference on Color in Graphics and Image Processing, pp. 45–50. Paris: Lavoisier, 2000.

[1099] A. Streitwieser Jr, C. H. Heathcock, and E. M. Kosower. Introduction to Organic Chemistry, Fourth edition. New York: Macmillan, 1992.

[1100] C. F. Stromeyer. “Form-Color After Effects in Human Vision.” In Handbook of Sensory Physiology: Perception, VIII, edited by R. Held, H. W. Leibowitz, and H. L. Teuber, pp. 97–142. New York: Springer-Verlag, 1978.

[1101] S. Subramanian and I. Biederman. “Does Contrast Reversal Affect Object Identification?” Investigative Ophthalmology and Visual Science 38:998.

[1102] K. Suffern. Ray Tracing from the Ground Up. Wellesley, MA: A K Peters, 2007.

[1103] A. Sugimoto, H. Ochi, S. Fujimura, A. Yoshida, T. Miyadera, and M. Tsuchida. “Flexible OLED Displays using Plastic Substrates.” IEEE Journal of Selected Topics in Quantum Electronics 10:1 (2004), 107–114.

[1104] H. Sugiura, K. Sakawa, and J. Fujimo. “False Color Signal Reduction Method for Single-Chip Color Video Cameras.” IEEE Transactions on Consumer Electronics 40:2 (1994), 100–106.

[1105] W. E. Sumpner. “The Diffusion of Light.” Proceedings of the Physical Society of London 12 (1892), 10–29.

[1106] Y. Sun, D. Fracchia, T. W. Calvert, and M. S. Drew. “Deriving Spectra from Colors and Rendering Light Interference.” IEEE Computer Graphics and Applications 19:4 (1999), 61–67.

[1107] Y. Sun. “Rendering Biological Iridescences with RGB-Based Renderers.” ACM Transactions on Graphics 25:1 (2006), 100–129.

[1108] W. Suzuki, K. S. Saleem, and K. Tanaka. “Divergent Backward Projections from the Anterior Part of the Inferotemporal Cortex (Area TE) in the Macaque.” Journal of Comparative Neurology 422:2 (2000), 206–228.

[1109] H. Suzuki. Electronic Absorption Spectra and Geometry of Organic Molecules: An Application of Molecular Orbital Theory. New York: Academic Press, 1967.

[1110] M. J. Swain and D. H. Ballard. “Color Indexing.” International Journal of Computer Vision 7:1 (1991), 11–32.

[1111] Swedish Standards Institute. Colour Notation System, Second edition. Stockholm: Swedish Standards Institute, 1990.

[1112] K. Takatoh, M. Hasegawa, M. Koden, N. Itoh, R. Hasegawa, and M. Sakamoto. Alignment Technologies and Applications of Liquid Crystal Devices. London: Taylor and Francis, 2005.

[1113] H. Takeshi, H. Onoe, H. Shizuno, E. Yoshikawa, N. Sadato, H. Tsukada, and Y. Watanabe. “Mapping of Cortical Areas Involved in Color Vision in Non-Human Primates.” Neuroscience Letters 230:1 (1997), 17–20.

[1114] A. A. Talin, K. A. Dean, and J. E. Jaskie. “Field Emission Displays: A Critical Review.” Solid-State Electronics 45 (2001), 963–976.

[1115] E.-V. Talvala, A. Adams, M. Horowitz, and M. Levoy. “Veiling Glare in High Dynamic Range Imaging.” ACM Transactions on Graphics 26:3 (2007), 37–1 – 37–9.

[1116] N. Tamura, N. Tsumura, and Y. Miyake. “Masking Model for Accurate Colorimetric Characterization of LCD.” In Proceedings of the IS&T/SID Tenth Color Imaging Conference, pp. 312– 316. Springfield, VA: Society of Imaging Science and Technology, 2002.

[1117] C. W. Tang and S. A. VanSlyke. “Organic Electroluminescent Diode.” Applied Physics Letters 51:12 (1987), 913–915.

[1118] J. Tanida and K. Yamada. “TOMBO: Thin Observation by Bound Optics.” Applied Optics 40:11 (2001), 1806–1813.

[1119] J. Tanida, R. Shogenji, Y. Kitamura, M. Miyamoto, and S. Miyatake. “Color Imaging with an Integrated Compound Imaging System.” Journal of the Optical Society of America A 11:18 (2003), 2109–2117.

[1120] L. E. Tannas, editor. Flat-Panel Displays and CRTs. New York: Van Nostrand Reinhold Company, 1985.

[1121] A. H. Taylor and E. B. Rosa. “Theory, Construction, and Use of the Photometric Integrating Sphere.” Scientific Papers of the Bureau of Standards 18 (1922), 280–325.

[1122] H. Terstiege. “Chromatic Adaptation: A State-of-the-Art Report.” Journal of Color and Appearance 1 (1972), 19–23.

[1123] A. J. P. Theuwissen. “CCD or CMOS Image Sensors for Consumer Digital Still Photography.” In IEEE International Symposium on VLSI Technology, Systems, and Applications, pp. 168–171, 2001.

[1124] W. B. Thompson, P. Shirley, and J. Ferwerda. “A Spatial Post-Processing Algorithm for Images of Night Scenes.” journal of graphics tools 7:1 (2002), 1–12.

[1125] M. G. A. Thomson. “Higher-Order Structure in Natural Scenes.” Journal of the Optical Society of America A 16:7 (1999), 1549–1553.

[1126] M. G. A. Thomson. “Visual Coding and the Phase Structure of Natural Scenes.” Network: Computation in Neural Systems 10:2 (1999), 123–132.

[1127] L. G. Thorell, R. L. de Valois, and D. G. Albrecht. “Spatial Mapping of Monkey V1 Cells with Pure Color and Luminance Stimuli.” Vision Research 24:7 (1984), 751–769.

[1128] R. Tilley. Colour and the Optical Properties of Materials. Chichester, UK: John Wiley and Sons, 1999.

[1129] D. Todorovi´c. “Lightness and Junctions.” Perception 26 (1997), 379–395.

[1130] D. J. Tolhurst, Y. Tadmor, and T. Chiao. “Amplitude Spectra of Natural Images.” Ophthalmic and Physiological Optics 12 (1992), 229–232.

[1131] C. Tomasi and R. Manduchi. “Bilateral Filtering for Gray and Color Images.” In Proceedings of the IEEE International Conference on Computer Vision, pp. 836–846. Washington, DC: IEEE Press, 1998.

[1132] S. Tominaga and B. A. Wandell. “The Standard Surface Reflectance Model and Illuminant Estimation.” Journal of the Optical Society of America A 6:4 (1989), 576–584.

[1133] S. Tominaga and B. A. Wandell. “Natural Scene-Illuminant Estimation using the Sensor Correlation.” Proceedings of the IEEE 90:1 (2002), 42–56.

[1134] S. Tominaga, S. Ebisui, and B. A. Wandell. “Scene Illuminant Classification: Brighter is Better.” Journal of the Optical Society of America A 18:1 (2001), 55–64.

[1135] S. Tominaga. “Surface Identification using the Dichromatic Reflection Model.” IEEE Transactions on Pattern Analysis and Machine Intelligence 13 (1991), 658–670.

[1136] S. Tominaga. “Dichromatic Reflection Models for a Variety of Materials.” Color Research and Application 19:4 (1994), 277–285.

[1137] S. Tominaga. “Multichannel Vision System for Estimation Surface and Illumination Functions.” Journal of the Optical Society of America A 13:11 (1996), 2163–2173.

[1138] R. B. H. Tootell, J. B. Reppas, A. M. Dale, R. B. Look, M. I. Sereno, R. Malach, T. J. Brady, and B. R. Rosen. “Visual Motion Aftereffect in Human Cortical Area MT Revealed by Functional Magnetic Resonance Imaging.” Nature 375:6527 (1995), 139–141.

[1139] R. B. H. Tootell, K. Nelissen, W. Vanduffel, and G. A. Orban. “Search for Color ’Center(s)’ in Macaque Visual Cortex.” Cerebral Cortex 14:4 (2004), 353–363.

[1140] K. E. Torrance and E. M. Sparrow. “Theory for Off-Specular Reflection from Roughened Surfaces.” Journal of the Optical Society of America 57:9 (1967), 1105–1114.

[1141] K. Toyoda. “Digital Still Cameras at a Glance.” In Image Sensors and Signal Processing for Digital Still Cameras, edited by J. Nakamura, pp. 1–19. Boca Raton, FL: Taylor and Francis, 2006.

[1142] C. van Trigt. “Color Rendering, A Reassessment.” Color Research and Application 24:3 (1999), 197–206.

[1143] T. Troscianko and I. Low. “A Technique for Presenting Isoluminant Stimuli using a Microcomputer.” Spatial Vision 1 (1985), 197–202.

[1144] T. Troscianko, R. Baddeley, C. P´arraga, U. Leonards, and J. Troscianko. “Visual Encoding of Green Leaves in Primate Vision.” Journal of Vision 3 (2003), 137a.

[1145] T. Troscianko. “A Given Visual Field Location Has a Wide Range of Receptive Field Sizes.” Vision Research 22 (1982), 1363–1369.

[1146] J. Tsitsiklis. “Efficient Algorithms for Globally Optimal Trajectories.” IEEE Transactions on Automatic Control 40 (1995), 1528–1538.

[1147] D. Y. Ts’o and C. D. Gilbert. “The Organization of Chromatic and Spatial Interactions in the Primate Striate Cortex.” Journal of Neuroscience 8:5 (1988), 1712–1727.

[1148] T. Tsuji, S. Kawami, S. Miyaguchi, T. Naijo, T. Yuki, S. Matsuo, and H. Miyazaki. “RedPhosphorescent OLEDs Employing bis-(8-Quinolinolato)-Phenolato-Aluminum (III) Complexes as Emission-Layer Hosts.” SID Symposium Digest of Technical Papers 35:1 (2004),900–903.

[1149] M. Tsukada and Y. Ohta. “An Approach to Color Constancy from Mutual Reflection.” In Proceedings of the 3rd International Conference on Computer Vision, pp. 385–389. Washington, DC: IEEE Press, 1990.

[1150] T. Tsutsui. “A Light-Emitting Sandwich Filling.” Nature 420:6917 (2002), 752–755.

[1151] H. F. J. M. van Tuijl. “A New Visual Illusion: Neonlike Color Spreading and Complementary Color Induction between Subjective Contours.” Acta Psychologica 39 (1975), 441–445.

[1152] J. Tumblin and H. Rushmeier. “Tone Reproduction for Computer Generated Images.” IEEE Computer Graphics and Applications 13:6 (1993), 42–48.

[1153] J. Tumblin and G. Turk. “LCIS: A Boundary Hierarchy for Detail-Preserving Contrast Reduction.” In Proceedings SIGGRAPH ’99, Computer Graphics Proceedings, Annual Conference Series, edited by A. Rockwood, pp. 83–90. Reading, MA: Addison-Wesley Longman, 1999.

[1154] K. Turkowski. “Transformations of Surface Normal Vectors with Applications to Three Dimensional Computer Graphics.” Technical Report 22, Apple Computer, Inc., 1990.

[1155] S. R. Turns. An Introduction to Combustion: Concepts and Applications, Second edition. New York: McGraw-Hill, 1996.

[1156] S. A. Twomey, C. F. Bohren, and J. L. Mergenthaler. “Reflectance and Albedo Differences between Wet and Dry Surfaces.” Applied Optics 25:3 (1986), 431–437.

[1157] C. W. Tyler. “Analysis of Human Receptor Density.” In Basic and Clinical Applications of Vision Science, edited by V. Lakshminarayanan, pp. 63–71. Norwood, MA: Kluwer Academic\ Publishers, 1997.

[1158] E. P. T. Tyndall. “Chromaticity Sensibility to Wavelength Difference as a Function of Purity.” Journal of the Optical Society of America 23:1 (1933), 15–22.

[1159] H. Uchiike and T. Hirakawa. “Color Plasma Displays.” Proceedings of the IEEE 90:4 (2002), 533–539.

[1160] H. Uchiike, K. Miura, N. Nakayama, and T. Shinoda. “Secondary Electron Emission Characteristics of Dielectric Materials in AC-Operated Plasma Display Panels.” IEEE Transactions on Electron Devices ED-23 (1976), 1211–1217.

[1161] Z. Ulanowski. “Ice Analog Halos.” Applied Optics 44:27 (2005), 5754–5758.

[1162] R. Ulbricht. “Die Bestimmung der mittleren raumlichen Lichtintensitat durch nur eine Messung.” Elektrotechnische Zeitschrift 21 (1900), 595–597.

[1163] I. Underwood. “A Review of Microdisplay Technologies.” In The Annual Conference of the UK and Ireland Chapter of the Society for Information Display. San Jose, CA: Society for Information Display, 2000.

[1164] L. G. Ungerleider and R. Desimone. “Cortical Connections of Visual Area MT in the Macaque.” Journal of Comparative Neurology 248:2 (1986), 190–222.

[1165] L. G. Ungerleider and R. Desimone. “Projections to the Superior Temporal Sulcus from the Central and Peripheral Field Representations of V1 and V2.” Journal of Comparative Neurology 248:2 (1986), 147–163.

[1166] United States Committee on Extension to the Standard Atmosphere. U.S. Standard Atmosphere, 1976. Washington, D.C.: National Oceanic and Atmospheric Administration, National Aeronautics and Space Administration, United States Air Force, 1976.

[1167] M. Uyttendaele, A. Eden, and R. Szeliski. “Eliminating Ghosting and Exposure Artifacts in Image Mosaics.” In IEEE Computer Society Conference on Computer Vision and Pattern Recognition, Volume 2, p. 509. Washington, DC: IEEE Press, 2001.

[1168] K. M. Vaeth. “OLED-display technology.” Information Display 19:6 (2003), 12–17.

[1169] J. M. Valeton and D. van Norren. “Light-Adaptation of Primate Cones: An Analysis Based on Extracellular Data.” Vision Research 23:12 (1982), 1539–1547.

[1170] R. L. de Valois and K. K. de Valois. “Neural Coding of Color.” In Handbook of Perception V, edited by E. C. Carterette and M. P. Friedman, pp. 117–166. New York: Academic Press, 1975.

[1171] R. L. de Valois and K. K. de Valois. “A Multi-Stage Color Model.” Vision Research 33 (1993), 1053–1065.

[1172] R. L. de Valois, I. Abramov, and G. H. Jacobs. “Analysis of Response Patterns of LGN Cells.” Journal of the Optical Society of America 56:7 (1966), 966–977.

[1173] R. L. de Valois, D. M. Snodderly Jr, E. W. Yund, and N. K. Hepler. “Responses of Macaque Lateral Geniculate Cells to Luminance and Color Figures.” Sensory Processes 1:3 (1977), 244– 259.

[1174] R. L. de Valois, K. K. de Valois, E. Switkes, and L. E. Mahon. “Hue Scaling of Isoluminant and Cone-Specific Lights.” Vision Research 37:7 (1997), 885–897.

[1175] R. L. de Valois, N. P. Cottaris, S. D. Elfar, L. E. Mahon, and J. A. Wilson. “Some Transformations of Color Information from Lateral Geniculate Nucleus to Striate Cortex.” Proceedings of the National Academy of Sciences of the United States of America 97:9 (2000), 4997–5002.

[1176] R. L. de Valois, K. K. de Valois, and L. E. Mahon. “Contribution of S Opponent Cells to Color Appearance.” Proceedings of the National Academy of Sciences of the United States of                                                   America 97:1 (2000), 512–517.

[1177] D. I. Vaney. “The Mosaic of Amacrine Cells in the Mammalian Retina.” Progress in Retinal and Eye Research 9 (1990), 49–100.

[1178] R. VanRullen and T. Dong. “Attention and Scintillation.” Vision Research 43:21 (2003), 2191–2196.

[1179] D. Varin. “Fenomeni di contrasto e diffusione cromatica nell organizzazione spaziale del campo percettivo.” Rivista di Psicologia 65 (1971), 101–128.

[1180] R. G. Vautin and B. M. Dow. “Color Cell Groups in Foveal Striate Cortex of the Behaving Macaque.” Journal of Neurophysiology 54:2 (1985), 273–292.

[1181] T. R. Vidyasagar, J. J. Kulikowski, D. M. Lipnicki, and B. Dreher. “Convergence of Parvocellular and Magnocellular Information Channels in the Primary Visual Cortex of the Macaque.” European Journal of Neuroscience 16:5 (2002), 945–956.

[1182] J. A. S. Viggiano. “Modeling the Color of Multi-Colored Halftones.” In Proceedings of the Technical Association of Graphical Arts, pp. 44–62. Sewickley, PA: Technical Association of the Graphic Arts, 1990.

[1183] B. Vohnsen. “Photoreceptor Waveguides and Effective Retinal Image Quality.” Journal of the Optical Society of America A 24:3 (2007), 597–607.

[1184] E. V¨olkl, L. F. Allard, and D. C. Joy, editors. Introduction to Electron Holography. New York: Kluwer Academic / Plenum Publishers, 1999.

[1185] J. J. Vos, J. Walraven, and A. van Meeteren. “Light Profiles of the Foveal Image of a Point Source.” Vision Research 16:2 (1976), 215–219.

[1186] J. Vos. “Disability Glare—A State of the Art Report.” CIE Journal 3:2 (1984), 39–53.

[1187] M. J. Vrhel and H. J. Trussell. “Color Device Calibration: A Mathematical Formulation.” IEEE Transactions on Image Processing 8:12 (1999), 1796–1806.

[1188] H. L. de Vries. “The Quantum Character of Light and Its Bearing upon the Threshold of Vision, the Differential Sensitivity and Acuity of the Eye.” Physica 10:7 (1943), 553–564.

[1189] T. Wachtler, T. J. Sejnowski, and T. D. Albright. “Representation of Color Stimuli in Awake Macaque Primary Visual Cortex.” Neuron 37:4 (2003), 681–691.

[1190] H. G. Wagner, E. F. MacNichol, and M. L. Wolbarsht. “Three Response Properties of Single Ganglion Cells in the Goldfish Retina.” Journal of General Physiology 43 (1960), 45–62.

[1191] G. Wald and D. R. Griffin. “The Change in Refractive Power of the Human Eye in Dim and Bright Light.” Journal of the Optical Society of America 37 (1946), 321–336.

[1192] I. Wald and P. Slusallek. “State of the Art in Interactive Ray Tracing.” In Eurographics STAR - State of the Art Reports, pp. 21–42. Aire-la-Ville, Switzerland: Eurographics Association, 2001.

[1193] I. Wald, P. Slusallek, and C. Benthin. “Interactive Distributed Ray Tracing of Highly Complex Models.” In Proceedings of the 12th Eurographics Workshop on Rendering, edited by S. J. Gortler and K. Myszkowski, pp. 274–285. Aire-la-Ville, Switzerland: Eurographics Association, 2001.

[1194] G. Wald. “Human Vision and the Spectrum.” Science 101, pp. 653–658.

[1195] M. M. Waldrop. “Brilliant Displays.” Scientific American 297:3 (2007), 94–97.

[1196] H. Wallach. “Brightness Constancy and the Nature of Achromatic Colors.” Journal of Experimental Psychology 38 (1948), 310–324.

[1197] G. Walls. “The Filling-In Process.” American Journal of Optometry 31 (1954), 329–340.

[1198] E. Walowit, C. J. McCarthy, and R. S. Berns. “Spectrophotometric Color Matching Based on Two-Constant Kubelka-Munk Theory.” Color Research and Application 13:6 (1988), 358–362.

[1199] J. W. T. Walsh. Photometry, Third edition. New York: Dover Publications, Inc., 1965.

[1200] B. Walter. “Notes on the Ward BRDF.” Technical Report PCG-05-06, Cornell Program of Computer Graphics, Ithaca, NY, 2005.

[1201] B. A. Wandell and J. E. Farrell. “Water into Wine: Converting Scanner RGB to Tristimulus XYZ [1909-11].” In Proceedings of SPIE 1909, pp. 92–101. Bellingham, WA: SPIE, 1993.

[1202] B. A. Wandell, H. A. Baseler, A. B. Poirson, G. M. Boynton, and S. A. Engel. “Computational Neuroimaging: Color Tuning in Two Human Cortical Areas Measured using fMRI.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. Sharpe, pp. 269–282. Cambridge, UK: Cambridge University Press, 1999.

[1203] B. A. Wandell. “Color Rendering of Color Camera Data.” Color Research and Application 11 (1986), S30–S33.

[1204] B. A. Wandell. “The Synthesis and Analysis of Color Images.” IEEE Transactions on Patterns Analysis and Machine Intelligence 9:1 (1987), 2–13.

[1205] B. A. Wandell. Foundations of Vision. Sunderland, Massachusetts: Sinauer Associates, inc., 1995.

[1206] J. Y. A. Wang and E. H. Adelson. “Representing Moving Images with Layers.” IEEE Transactions on Image Processing 3:5 (1994), 625–638.

[1207] L. Wang, L.-Y. Wei, K. Zhou, B. Guo, and H.-Y. Shum. “High Dynamic Range Image Hallucination.” In Rendering Techniques ’07 (Proceedings of the Eurographics Symposium on Rendering), 2007.

[1208] G. Ward and E. Eydelberg-Vileshin. “Picture Perfect RGB Rendering using Spectral Prefiltering and Sharp Color Primaries.” In Thirteenth Eurographics Workshop on Rendering, edited by P. Debevec and S. Gibson, pp. 123–130. Aire-la-Ville, Switzerland: Eurographics Association, 2002.

[1209] G. Ward and M. Simmons. “Subband Encoding of High Dynamic Range Imagery.” In APGV ’04: Proceedings of the 1st Symposium on Applied Perception in Graphics and Visualization, pp. 83–90. New York: ACM Press, 2004.

[1210] G. Ward and M. Simmons. “JPEG-HDR: A Backwards Compatible, High Dynamic Range Extension to JPEG.” In Proceedings of the Thirteenth Color Imaging Conference, pp. 283–290. Springfield, VA: Society for Imaging Science and Technology, 2005.

[1211] G. Ward, H. Rushmeier, and C. Piatko. “A Visibility Matching Tone Reproduction Operator for High Dynamic Range Scenes.” IEEE Transactions on Visualization and Computer Graphics 3:4 (1997), 291–306.

[1212] G. Ward. “Measuring and Modeling Anisotropic Reflection.” Proc. SIGGRAPH ’92, Computer Graphics 26:2 (1992), 265–272.

[1213] G. Ward. “A Contrast-Based Scalefactor for Luminance Display.” In Graphics Gems IV, edited by P. Heckbert, pp. 415–421. Boston: Academic Press, 1994.

[1214] G. Ward. “Fast, Robust Image Registration for Compositing High Dynamic Range Photographs from Hand-Held Exposures.” journal of graphics tools 8:2 (2003), 17–30.

[1215] C. Ware. “Color Sequences for Univariate Maps: Theory, Experiments, and Principles.” IEEE Computer Graphics and Applications 8:5 (1988), 41–49.

[1216] C. Ware. Information Visualization: Perception for Design. Morgan Kaufmann, 2000.

[1217] H. W¨assle and B. B. Boycott. “Functional Architecture of the Mammalian Retina.” Physiological Reviews 71:2 (1991), 447–480.

[1218] H. W¨assle, U. Gr¨unert, M.-H. Chun, and B. B. Boycott. “The Rod Pathway of the Macaque Monkey Retina: Identification of AII-Amacrine Cells with Antibodies against Calretinin.” Journal of Comparative Neurology 361:3 (1995), 537–551.

[1219] A. Watson and A. Ahumada. “A Standard Model for Foveal Detection of Spatial Contrast.” Journal of Vision 5:9 (2005), 717–740.

[1220] A. Watson and J. Solomon. “A Model of Visual Contrast Gain Control and Pattern Masking.” Journal of the Optical Society of America 14 (1997), 2378–2390.

[1221] A. Watson. “The Spatial Standard Observer: A Human Vision Model for Display Inspection.” SID Symposium Digest of Tehcnical Papers 37 (2006), 1312–1315.

[1222] R. A. Weale. “Human Lenticular Fluorescence and Transmissivity, and Their Effects on Vision.” Experimental Eye Research 41:4 (1985), 457–473.

[1223] R. A. Weale. “Age and Transmittance of the Human Crystalline Lens.” Journal of Physiology 395 (1988), 577–587.

[1224] M. S. Weaver, V. Adamovich, M. Hack, R. Kwong, and J. J. Brown. “High Efficiency and Long Lifetime Phosphorescent OLEDs.” In Proceedings of the International Conference on Electroluminescence of Molecular Materials and Related Phenomena, pp. 10–35. Washington, DC: IEEE, 2003.

[1225] E. H. Weber. “De pulsu, resorptione, auditu et tactu.” In Annotationes Anatomicae et Physiologicae. Lipsiae: C F K¨ohler, 1834.

[1226] E. H. Weber. “On the Sense of Touch and Common Sensibility.” In E H Weber On the Tactile Senses, edited by H. E. Ross and D. J. Murray, Second edition. Hove, UK: Erlbaum, 1996.

[1227] M. A. Webster and J. D. Mollon. “Color Constancy Influenced by Contrast Adaptation.” Nature 373:6516 (1995), 694–698.

[1228] M. Webster. “Light Adaptation, Contrast Adaptation, and Human Colour Vision.” In Colour Perception: Mind and the Physical World, edited by R. Mausfeld and D. Heyer, pp. 67–110.Oxford, UK: Oxford University Press, 2003.

[1229] M. Webster. “Pattern-Selective Adaptation in Color and Form Perception.” In The Visual Neurosciences, Volume 2, edited by L. Chalupa and J. Werner, pp. 936–947. Cambridge, MA: MIT Press, 2004.

[1230] A. R. Weeks. Fundamentals of Image Processing. New York: Wiley-IEEE Press, 1996.

[1231] B. Weiss. “Fast Median and Bilateral Filtering.” ACM Transactions on Graphics 25:3 (2006), 519–526.

[1232] E. W. Weisstein. “Full Width at Half Maximum.” In MathWorld — A Wolfram Web Resource. Wolfram Research, 1999. Available online (Wolfram MathWorld: The Web's Most Extensive Mathematics Resource).

[1233] E. W. Weisstein. “Mie Scattering.” In MathWorld — A Wolfram Web Resource. Wolfram Research, 1999. Available online (Wolfram MathWorld: The Web's Most Extensive Mathematics Resource).

[1234] S.-W. Wen, M.-T. Lee, and C. H. Chen. “Recent Development of Blue Fluorescent OLED Materials and Devices.” IEEE/OSA Journal of Display Technology 1:1 (2005), 90–99.

[1235] J. Weng, P. Cohen, and M. Herniou. “Camera Calibration with Distortion Models and Accuracy Evaluation.” IEEE Transactions on Pattern Analysis and Machine Intelligence 14:10 (1994), 965–980.

[1236] S. Wesolkowski, S. Tominaga, and R. D. Dony. “Shading and Highlight Invariant Color Image Segmentation using the MPC Algorithm.” In Proceedings of the SPIE (Color Imaging: DeviceIndependent Color, Color Hard Copy and Graphic Arts VI), pp. 229–240. Bellingham, WA: SPIE, 2001.

[1237] R. S. West, H. Konijn, W. Sillevis-Smitt, S. Kuppens, N. Pfeffer, Y. Martynov, Y. Takaaki,S. Eberle, G. Harbers, T. W. Tan, and C. E. Chan. “High Brightness Direct LED Backlight for LCD-TV.” SID Symposium Digest of Technical Papers 34:1 (2003), 1262–1265.

[1238] G. Westheimer. “Visual Acuity.” Annual Review of Psychology 16 (1965), 359–380.

[1239] G. Westheimer. “Visual Acuity.” In Adler’s Physiology of the Eye, edited by R. A. Moses and W. M. Hart. St. Louis: The C V Mosby Company, 1987.

[1240] S. Westin, J. Arvo, and K. Torrance. “Predicting Reflectance Functions from Complex Surfaces.” In Proceedings SIGGRAPH ’99, Computer Graphics Proceedings, Annual Conference Series, pp. 255–264. Reading, MA: Addison-Wesley Longman, 1999.

[1241] M. White. “A New Effect on Perceived Lightness.” Perception 8:4 (1979), 413–416.

[1242] T. Whitted. “An Improved Illumination Model for Shaded Display.” Communications of the ACM 23:6 (1980), 343–349.

[1243] H. Widdel, D. L. Grossman, D. L. Post, and J. Walraven, editors. Color in Electronic Displays. Dordrecht, Netherlands: Kluwer Academic / Plenum Publishers, 1992.

[1244] T. N. Wiesel and D. H. Hubel. “Spatial and Chromatic Interactions in the Lateral Geniculate Body of the Rhesus Monkey.” Journal of Neurophysiology 29 (1966), 1115–1156.

[1245] D. R. Williams and A. Roorda. “The Trichromatic Cone Mosaic in the Human Eye.” In Color Vision: From Genes to Perception, edited by K. R. Gegenfurtner and L. T. Sharpe, pp. 113–122. Cambridge, UK: Cambridge University Press, 1999.

[1246] T. L. Williams. The Optical Transfer Function of Imaging Systems. Bristol, UK: Institute of Physics Publishing, 1999.

[1247] S. J. Williamson and H. Z. Cummins. Light and Color in Nature and Art. New York: John Wiley and Sons, 1983.

[1248] E. N. Wilmer and W. D. Wright. “Colour Sensitivity of the Fovea Centralis.” Nature 156 (1945), 119–121.

[1249] K. Witt. “Modified CIELAB Formula Tested using a Textile Pass/Fail Data Set.” Colour Research and Application 19 (1994), 273–285.

[1250] L. B. Wolff. “Polarization-Based Material Classification from Specular Reflection.” IEEE Transactions on Patterns Analysis and Machine Intelligence 12:11 (1990), 1059–1071.

[1251] M. Wong-Riley. “Columnar Cortico-Cortical Interconnections within the Visual System of the Squirrel and Macaque Monkeys.” Brain Research 162:2 (1979), 201–217.

[1252] H.-S. P. Wong. “CMOS Imge Sensors — Recent Advances and Device Scaling Considerations.” In International Electron Devices Meeting Technical Digest, pp. 201–204, 1997.

[1253] W. Wright. “A Red-Determination of the Trichromatic Coefficients of the Spectral Colours.” Trans. Opt. Soc. 30 (1928–1929), 141–161.

[1254] W. D. Wright. “The Characteristics of Tritanopia.” Journal of the Optical Society of America 42 (1952), 509–520.

[1255] W. Wright. “Why and How Chromatic Adaptation Has Been Studied.” Color Research and Application 6 (1981), 147–152.

[1256] W. Wu and J. P. Allebach. “Imaging Colorimetry using a Digital Camera.” Journal of Imaging Science and Technology 44:4 (2000), 267–279.

[1257] S. Wurmfeld. “Color in Abstract Painting.” In Color for Science, Art and Technology, edited by K. Nassau. Amsterdam: Elsevier Science B.V., 1998.

[1258] D. R. Wyble and R. Berns. “A Critical Review of Spectral Models Applied to Binary Color Printing.” Color Research and Application 25 (2000), 4–19.

[1259] D. R. Wyble and M. R. Rosen. “Color Management of DLP Projectors.” In Proceedings of the 12th IS&T/SID Color Imaging Conference, pp. 228–232. Springfield, VA: Society for Imaging Science and Technology, 2004.

[1260] D. R. Wyble and H. Zhang. “Colorimetric Characterization Model for DLP Projectors.” In Proceedings of the 11th IS&T/SID Color Imaging Conference, pp. 346–350. Springfield, VA: Society for Imaging Science and Technology, 2003.

[1261] G. Wyszecki and W. S. Stiles. Color Science: Concepts and Methods, Quantitative Data and Formulae. New York: John Wiley & Sons, 1982.

[1262] G. Wyszecki and W. S. Stiles. Color science: Concepts and methods, quantitative data and formulae, Second edition. John Wiley and Sons, Ltd, 2000.

[1263] K. Xiao, C. Li, M. Luo, and C. Taylor. “Color Appearance for Dissimilar Sizes.” In IS&T CGIV, 2nd European Conference on Color in Graphics, Imaging, and Vision, pp. 12–16. Spring-field, VA: Society for Imaging Science and Technology, 2004.

[1264] C. Xu, W. Zhang, W.-H. Ki, and M. Chan. “A 1.0-V VDD CMOS Active-Pixel Sensor with Complementary Pixel Architecture and Pulsewidth Modulation Fabricated with a 0.25 μm CMOS Process.” IEEE Journal of Solid-State Circuits 37:12 (2002), 1853–1859.

[1265] N. H. Yabuta and E. M. Callaway. “Functional Streams and Local Connections of Layer 4C Neurons in Primary Visual Cortex of the Macaque Monkey.” Journal of Neuroscience 18:22 (1998), 9489–9499.

[1266] O. Yadid-Pecht and E. R. Fossum. “Wide Intrascene Dynamic Range CMOS APS using Dual Sampling.” IEEE Transactions on Electron Devices 44:10 (1997), 1721–1723.

[1267] H. Yamaguchi and M. D. Fairchild. “A Study of Simultaneous Lightness Perception for Stimuli with Multiple Illumination Levels.” In IS&T/SID 12th Color Imaging Conference, pp. 22–28. Springfield, VA: Society for Imaging Science and Technology, 2004.

[1268] M. Yamaguchi, T. Ajito, and N. Ohyama. “Multiprimary Color Display using Holographic Optical Element.” In Proceedings of the SPIE 3293, edited by S. A. Benton, pp. 70–77. Bellingham, WA: SPIE, 1998.

[1269] M. Yamaguchi, H. Haneishi, H. Fukuda, J. Kishimoto, H. Kanazawa, M. Tsuchida, R. Iwama, and N. Ohyama. “High-Fidelity Video and Still-Image Communication based on Spectral Information: Natural Vision System and Its Applications.” In Proceedings of SPIE 6062, edited by M. R. Rosen, F. H. Imai, and S. Tominaga, pp. 60620G–1–60620G–12. Bellingham, WA: SPIE, 2006.

[1270] M. Yamauchi. “Jones-Matrix Models for Twisted-Nematic Liquid-Crystal Devices.” Applied Optics 44:21 (2005), 4484–4493.

[1271] J. N. Yang and L. T. Maloney. “Illuminant Cues in Surface Color Perception: Tests of Three Candidate Cues.” Vision Research 41 (2001), 2581–2600.

[1272] D. X. D. Yang, A. E. Gamal, B. Fowler, and H. Tian. “A 640 × 512 CMOS Image Sensor with Ultrawide Dynamic Range Floating-Point Pixel-Level ADC.” IEEE Journal of Solid-State Circuits 34:12 (1999), 1821–1834.

[1273] T. Yasuda, T. Hamamoto, and K. Aizawa. “Adaptive-Integration-Time Sensor with Real-Time Reconstruction Function.” IEEE Transactions on Electron Devices 50:1 (2003), 111–120.

[1274] P. Yeh. “Extended Jones Matrix Method.” Journal of the Optical Society of America 72:4 (1982), 507–513.

[1275] H. Yersin. “Triplet emitters for OLED applications. Mechanisms of exciton trapping and control of emission properties.” In Transition Metal and Rare Earth Compounds, Topics in Current Chemistry 241, edited by H. Yersin. Berlin: Springer-Verlag, 2004.

[1276] M.-S. Yoo, J.-N. Kim, D.-J. Woo, S.-H. Yim, and Y.-H. Cho. “Development of Performance and Cost-Oriented HD PDP TV with High Picture Quality using a High Efficiency Hexagonal Array Structure.” Journal of the Society for Information Display 12 (2004), 251–256.

[1277] Y. Yoshida and Y. Yamamoto. “Color Calibration of LCDs.” In Proceedings of the IS&T/SID Tenth Color Imaging Conference, pp. 305–311. Springfield, VA: Society of Imaging Science and Technology, 2002.

[1278] A. Yoshida, V. Blanz, K. Myszkowski, and H.-P. Seidel. “Perceptual Evaluation of Tone Mapping Operators with Real-World Scenes.” In Proceedings of SPIE 5666 (Human Vision and Electronic Imaging X), pp. 192–203. Bellingham, WA: SPIE, 2005.

[1279] A. Yoshida, R. Mantiuk, K. Myszkowski, and H.-P. Seidel. “Analysis of Reproducing Real World Appearance on Displays of Varying Dynamic Range.” Computer Graphics Forum 25:3(2006), 415–426.

[1280] K. Yoshikawa, Y. Kanazawa, M. Wakitani, T. Shinoda, and A. Ohtsuka. “A Full Color ACPlasma Display with 256 Gray Scale.” In Proceedings of Asia Display, pp. 605–608. San Jose,CA: Society for Information Display, 1992.

[1281] T. Yoshioka, J. B. Levitt, and J. S. Lund. “Independence and Merger of Thalamocortical Channels within Macaque Monkey Primary Visual Ccortex: Anatomy of Interlaminar Projections.” Visual Neuroscience 11:3 (1994), 467–489.

[1282] I. T. Young, J. J. Gerbrands, and L. J. van Vliet. “Fundamentals of Image Processing (Online Image Processing Course at www.ph.tn.tudelft.nl/Courses/FIP/).”, 2006.

[1283] T. Young. “On the Theory of Light and Colors.” Philosophical Transactions of the Royal Society of London 92 (1802), 20–21. Reprinted in David L MacAdam (ed.), Selected Papers on Colorimetry — Fundamentals, SPIE Optical Engineering Press, 1993.

[1284] F. H. Yu and H. S. Kwok. “Comparison of Extended Jones Matrices for Twisted Nematic Liquid-Crystal Displays at Oblique Angles of Incidence.” Journal of the Optical Society of America A 16:11 (1999), 2772–2780.

[1285] Y. Yu, P. Debevec, J. Malik, and T. Hawkins. “Inverse Global Illumination: Recovering Reflectance Models of Real Scenes from Photographs.” In Proceedings SIGGRAPH ’99, Compute Graphics Proceedings, Annual Conference Series, pp. 215–224. Reading, MA: Addison-WesleyLongman, 1999.

[1286] M. Yukie and E. Iwai. “Direct Projection from the Dorsal Lateral Geniculate Nucleus to the Prestriate Cortex in Macaque Monkeys.” Journal of Comparative Neurology 201:1 (1981), 81–97.

[1287] J. A. C. Yule. Principles of Color Reproduction. New York: Wiley, 1967.

[1288] Q. Zaidi, B. Spehar, and M. Shy. “Induced Effects of Background and Foregrounds in ThreeDimensional Configurations: The Role of T-Junctions.” Perception 26 (1997), 395–408.

[1289] S. A. Zeki. “A Century of Cerebral Achromatopsia.” Brain 113:6 (1990), 1721–1777.

[1290] S. A. Zeki. Vision of the Brain. Oxford, UK: Blackwell Publishers, 1993.

[1291] S. A. Zeki. Inner Vision: An Exploration of Art and the Brain. Oxford, UK: Oxford University Press, 2000.

[1292] X. M. Zhang and B. Wandell. “A Spatial Extension to CIELAB for Digital Color Image Reproductions.” Proceedings of the SID Symposium Digest 27 (1996), 731–734.

[1293] R. Zhang, P. Tsai, J. Cryer, and M. Shah. “Shape from Shading: A Survey.” IEEE Transactionson Pattern Analysis and Machine Intelligence 21:8 (1999), 690–706.

[1294] X. Zhu and S.-T. Wu. “Overview on Transflective Liquid Crystal Displays.” In The 16th Annual Meeting of the IEEE Lasers and Electro-Optical Society, Volume 2, pp. 953–954. Washington, DC: IEEE Press, 2003.

[1295] C. Ziegaus and E. W. Lang. “Statistics of Natural and Urban Images.” In Proceedings of the 7th International Conference on Artificial Neural Networks, Lecture Notes in Computer Science 1327, pp. 219–224. Berlin: Springer-Verlag, 1997.

[1296] C. Ziegaus and E. W. Lang. “Statistical Invariances in Artificial, Natural and Urban Images.” Zeitschrift f¨ur Naturforschung A 53a:12 (1998), 1009–1021.

[1297] S. Zigman. “Vision Enhancement using a Short Wavelength Light Absorbing Filter.” Optometry and Vision Science 67:2 (1990), 100–104.

[1298] M. D’Zmura and G. Iverson. “Color Constancy. I. Basic Theory of Two-Stage Linear Recovery of Spectral Description for Lights and Surfaces.” Journal of the Optical Society of America A 10:10 (1993), 2148–2165.

[1299] M. D’Zmura and G. Iverson. “Color Constancy. II. Results for Two-Stage Linear Recovery of Spectral Description for Lights and Surfaces.” Journal of the Optical Society of America A 10:10 (1993), 2166–2180.

[1300] M. D’Zmura and P. Lennie. “Mechanisms of Color Constancy.” Journal of the Optical Society of America A 3:10 (1986), 1662–1673.

[1301] M. D’Zmura, G. Iverson, and B. Singer. “Probabilistic Color Constancy.” In Geometric Representations of Perceptual Phenomena, pp. 187–202. Mahwah, NJ: Lawrence Erlbaum, 1995.

[1302] J. A. Zuclich, R. D. Glickman, and A. R. Menendez. “In Situ Measurements of Lens Fluorescence and Its Interference With Visual Function.” Investigative Ophthalmology and Visual Science 33:2 (1992), 410–415.


http://www.kler.cn/news/295045.html

相关文章:

  • 2024年高教社杯数学建模国赛C题超详细解题思路分析
  • 图论篇--代码随想录算法训练营第五十天打卡| 深度优先搜索理论基础,98. 所有可达路径,广度优先搜索理论基础
  • 数字化转型专家讲师培训师唐兴通中欧国际工商学院数字化转型战略与实现路径AIGC人工智能数字化战略数字商业模式创新
  • 【数据库中级】1_DBeaver操作数据库
  • 【微信小程序】搭建项目步骤 + 引入Tdesign UI
  • Flink SQL 中常见的数据类型
  • 开源网安引领AIGC+开发安全,智能防护铸就软件安全新高度
  • 【Springboot基础知识】
  • 基于 rt-thread的I2C操作EEPROM(AT24C02)
  • 如何在mac上玩使命召唤手游?苹果电脑好玩的第一人称射击游戏推荐
  • 【linux学习指南】Linux编译器 gcc和g++使用
  • python 中使用tkinter构建一个图片的剪切器-附源码
  • 漫谈设计模式 [15]:观察者模式
  • 9. 相机控件OrbitControls
  • C++11线程池、多线程编程(附源码)
  • 信息熵|atttion矩阵的注意力熵
  • 设计并用Java实现一个简易的规则引擎
  • Python | Leetcode Python题解之第392题判断子序列
  • 【leetcode详解】爬楼梯:DP入门典例(附DP通用思路 同类进阶练习)
  • 使用Protocol Buffers传输数据
  • 在vscode中用virtual env的方法
  • git如何灵活切换本地账号对应远程github的两个账号
  • 代码随想录:279. 完全平方数
  • 如何在Selenium中使用Chrome进行网络限速
  • ComfyUI+Krea免费利用AI制作网站萌宠IP,五步搞定制作AI萌宠
  • React 响应事件
  • 【Godot4.3】多边形的斜线填充效果基础实现
  • 在Ubuntu 20.04上安装Nginx的方法
  • 懒人笔记-opencv4.8.0篇
  • 【详解 Java 注解】