Combining local and global contributions to perceived colour: An analysis of the variability in symmetric and asymmetric colour matching
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[1] HighWire Press. Philosophical Transactions of the Royal Society of London , 1781, The London Medical Journal.
[2] Physiologie der Sinne , 1904 .
[3] W. Nagel. Handbuch der Physiologie des Menschen. , 1905 .
[4] Vision Research , 1961, Nature.
[5] D. Jameson,et al. Opponent chromatic induction: experimental evaluation and theoretical account. , 1961, Journal of the Optical Society of America.
[6] E. Land,et al. Lightness and retinex theory. , 1971, Journal of the Optical Society of America.
[7] R. Harwerth,et al. Red-Green Cone Interactions in the Increment-Threshold Spectral Sensitivity of Primates , 1971, Science.
[8] J. Walraven. Spatial characteristics of chromatic induction; the segregation of lateral effects from straylight artefacts. , 1973, Vision research.
[9] E. William Yund,et al. Color and brightness contrast effects as a function of spatial variables , 1975, Vision Research.
[10] J J Koenderink,et al. Sensitivity to spatiotemporal combined luminance and chromaticity contrast. , 1981, Journal of the Optical Society of America.
[11] E H Land,et al. Recent advances in retinex theory and some implications for cortical computations: color vision and the natural image. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[12] M D'Zmura,et al. Mechanisms of color constancy. , 1986, Journal of the Optical Society of America. A, Optics and image science.
[13] E H Land,et al. An alternative technique for the computation of the designator in the retinex theory of color vision. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[14] L. Kaufman,et al. Handbook of perception and human performance , 1986 .
[15] Kenneth R. Boff,et al. Sensory processes and perception , 1986 .
[16] P. Lennie,et al. Mechanisms of color vision. , 1988, Critical reviews in neurobiology.
[17] A. Valberg,et al. “Colour constancy” in Mondrian patterns: A partial cancellation of physical chromaticity shifts by simultaneous contrast , 1990, Vision Research.
[18] J. Kulikowski,et al. Seeing Contour and Colour , 1990, Journal of Cognitive Neuroscience.
[19] S. Hochstein,et al. Channels in the Visual Nervous System: Neurophysiology,Psychophysics and Models , 1991 .
[20] P. Whittle. Brightness, discriminability and the “Crispening Effect” , 1992, Vision Research.
[21] D. Foster,et al. Relational colour constancy from invariant cone-excitation ratios , 1994, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[22] B. Wandell,et al. Photoreceptor sensitivity changes explain color appearance shifts induced by large uniform backgrounds in dichoptic matching , 1995, Vision Research.
[23] Eli Brenner,et al. Simultaneous colour constancy revisited: an analysis of viewing strategies , 1995, Vision Research.
[24] B. B. Lee,et al. Receptive field structure in the primate retina , 1996, Vision Research.
[25] A. Hurlbert. Colour vision: Putting it in context , 1996, Current Biology.
[26] A. Hurlbert,et al. Four issues concerning colour constancy and relational colour constancy , 1997, Vision Research.
[27] D. Macleod,et al. Color appearance depends on the variance of surround colors , 1997, Current Biology.
[28] H Spekreijse,et al. The cone/horizontal cell network: A possible site for color constancy , 1998, Visual Neuroscience.
[29] Eli Brenner,et al. When is a background equivalent? Sparse chromatic context revisited , 1998, Vision Research.
[30] Steven K Shevell,et al. Chromatic induction: border contrast or adaptation to surrounding light? , 1998, Vision Research.
[31] D. Hood,et al. Lower-level visual processing and models of light adaptation. , 1998, Annual review of psychology.
[32] R. J. van Beers,et al. Integration of proprioceptive and visual position-information: An experimentally supported model. , 1999, Journal of neurophysiology.
[33] S. Shevell,et al. Chromatic induction with remote chromatic contrast varied in magnitude, spatial frequency, and chromaticity , 1999, Vision Research.
[34] K. Mullen,et al. Ratio model for suprathreshold hue-increment detection. , 1999, Journal of the Optical Society of America. A, Optics, image science, and vision.
[35] D. Brainard,et al. Mechanisms of color constancy under nearly natural viewing. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[36] T. Sejnowski,et al. Nonlocal interactions in color perception: nonlinear processing of chromatic signals from remote inducers , 2001, Vision Research.
[37] M. Ernst,et al. Humans integrate visual and haptic information in a statistically optimal fashion , 2002, Nature.
[38] Eli Brenner,et al. The Influence of Chromatic and Achromatic Variability on Chromatic Induction and Perceived Colour , 2002, Perception.
[39] Bevil R. Conway,et al. Color contrast in macaque V1. , 2002, Cerebral cortex.
[40] Kathy T Mullen,et al. Ratio model serves suprathreshold color--luminance discrimination. , 2002, Journal of the Optical Society of America. A, Optics, image science, and vision.
[41] D. Dacey,et al. Colour coding in the primate retina: diverse cell types and cone-specific circuitry , 2003, Current Opinion in Neurobiology.
[42] Eli Brenner,et al. Chromatic induction and the layout of colours within a complex scene , 2003, Vision Research.
[43] Peter B. Delahunt,et al. Color constancy under changes in reflected illumination. , 2004, Journal of vision.
[44] Behzad Mansouri,et al. Orientation variance discrimination in amblyopic and normal vision , 2004 .
[45] H E Smithson,et al. Sensory, computational and cognitive components of human colour constancy , 2005, Philosophical Transactions of the Royal Society B: Biological Sciences.
[46] Sérgio M C Nascimento,et al. Effect of Scene Complexity on Colour Constancy with Real Three-Dimensional Scenes and Objects , 2005, Perception.
[47] F. W. Cornelissen,et al. Spatial interactions in color vision depend on distances between boundaries , 1991, Naturwissenschaften.
[48] Kinjiro Amano,et al. Minimalist Surface-Colour Matching , 2005, Perception.
[49] Xoana G. Troncoso,et al. Microsaccades Counteract Visual Fading during Fixation , 2005, Neuron.