Adaptation and the color statistics of natural images

[1]  M. Webster,et al.  Contrast adaptation and the spatial structure of natural images. , 1997, Journal of the Optical Society of America. A, Optics, image science, and vision.

[2]  M. Webster,et al.  Motion Minima for Different Directions in Color Space , 1997, Vision Research.

[3]  Michael J. Berry,et al.  Adaptation of retinal processing to image contrast and spatial scale , 1997, Nature.

[4]  J. H. van Hateren,et al.  Modelling the Power Spectra of Natural Images: Statistics and Information , 1996, Vision Research.

[5]  T Troscianko,et al.  Spatio-Chromatic Information Content of Natural Scenes , 1996 .

[6]  B. Fischer,et al.  On the Generation of Antisaccades in Different Conditions , 1996 .

[7]  J. H. van Hateren,et al.  Temporal properties of natural scenes , 1996, Human Vision and Electronic Imaging.

[8]  Alex R. Wade,et al.  Color in natural images and its implications for visual adaptation , 1996, Electronic Imaging.

[9]  Gavin J. Brelstaff,et al.  Hyperspectral camera system: acquisition and analysis , 1995, Remote Sensing.

[10]  M. Webster,et al.  Colour constancy influenced by contrast adaptation , 1995, Nature.

[11]  M. Webster,et al.  The influence of contrast adaptation on color appearance , 1994, Vision Research.

[12]  M. G. Nagle,et al.  The tuning of human photopigments may minimize red—green chromatic signals in natural conditions , 1993, Proceedings of the Royal Society of London. Series B: Biological Sciences.

[13]  J. Endler The Color of Light in Forests and Its Implications , 1993 .

[14]  Zhaoping Li,et al.  What does post-adaptation color appearance reveal about cortical color representation? , 1993, Vision Research.

[15]  Gavin J. Brelstaff,et al.  Information content of natural scenes: implications for neural coding of color and luminance , 1992, Electronic Imaging.

[16]  Zhaoping Li,et al.  Understanding Retinal Color Coding from First Principles , 1992, Neural Computation.

[17]  D. Tolhurst,et al.  Amplitude spectra of natural images , 1992 .

[18]  Gershon Buchsbaum,et al.  A computational model of spatiochromatic image coding in early vision , 1991, J. Vis. Commun. Image Represent..

[19]  Colin Blakemore,et al.  Vision: Coding and Efficiency , 1991 .

[20]  M. Webster,et al.  Changes in colour appearance following post-receptoral adaptation , 1991, Nature.

[21]  P. Lennie,et al.  Contrast adaptation in striate cortex of macaque , 1989, Vision Research.

[22]  J. Mollon "Tho' she kneel'd in that place where they grew..." The uses and origins of primate colour vision. , 1989, The Journal of experimental biology.

[23]  Peter Földiák,et al.  Adaptation and decorrelation in the cortex , 1989 .

[24]  Richard Durbin,et al.  The computing neuron , 1989 .

[25]  E. Switkes,et al.  Orientation and spatial frequency selectivity of adaptation to color and luminance gratings , 1988, Vision Research.

[26]  D J Field,et al.  Relations between the statistics of natural images and the response properties of cortical cells. , 1987, Journal of the Optical Society of America. A, Optics and image science.

[27]  Angela M. Brown,et al.  Higher order color mechanisms , 1986, Vision Research.

[28]  I. Ohzawa,et al.  Contrast gain control in the cat's visual system. , 1985, Journal of neurophysiology.

[29]  K. Mullen The contrast sensitivity of human colour vision to red‐green and blue‐yellow chromatic gratings. , 1985, The Journal of physiology.

[30]  P. Lennie,et al.  Chromatic mechanisms in lateral geniculate nucleus of macaque. , 1984, The Journal of physiology.

[31]  G. Buchsbaum,et al.  Trichromacy, opponent colours coding and optimum colour information transmission in the retina , 1983, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[32]  D. W. Heeley,et al.  Cardinal directions of color space , 1982, Vision Research.

[33]  J. Hailman Ecology of Vision , 1981 .

[34]  R. M. Boynton,et al.  Chromaticity diagram showing cone excitation by stimuli of equal luminance. , 1979, Journal of the Optical Society of America.

[35]  J. Pokorny,et al.  Spectral sensitivity of the foveal cone photopigments between 400 and 500 nm , 1975, Vision Research.

[36]  David L. MacAdam,et al.  Sources of Color Science , 1972 .

[37]  COLIN BLAKEMORE,et al.  Perceptual Fading of a Stabilized Cortical Image , 1971, Nature.

[38]  C Blakemore,et al.  On the existence of neurones in the human visual system selectively sensitive to the orientation and size of retinal images , 1969, The Journal of physiology.

[39]  D. B. Judd,et al.  Spectral Distribution of Typical Daylight as a Function of Correlated Color Temperature , 1964 .

[40]  D. Jameson,et al.  An opponent-process theory of color vision. , 1957, Psychological review.

[41]  S. Hecht,et al.  The colors of natural objects and terrains, and their relation to visual color deficiency. , 1949, Journal of the Optical Society of America.

[42]  J. Gibson,et al.  Adaptation, after-effect and contrast in the perception of tilted lines. I. Quantitative studies , 1937 .

[43]  Michael A. Webster,et al.  Human colour perception and its adaptation , 1996 .

[44]  D. Ruderman The statistics of natural images , 1994 .

[45]  D. Tolhurst,et al.  Amplitude spectra of natural images. , 1992, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.

[46]  H. Barlow Vision: A theory about the functional role and synaptic mechanism of visual after-effects , 1991 .

[47]  G. J. Burton,et al.  Color and spatial structure in natural scenes. , 1987, Applied optics.

[48]  M A Georgeson,et al.  The effect of spatial adaptation on perceived contrast. , 1985, Spatial vision.

[49]  C. Enroth-Cugell,et al.  Chapter 9 Visual adaptation and retinal gain controls , 1984 .

[50]  H. Wallach,et al.  Figural aftereffects; an investigation of visual processes. , 1944 .