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34Under typical viewing conditions, human observers readily distinguish between materials such as silk, marmalade, or granite, an achievement of the visual system that is poorly understood. Recognizing transparent materials is especially challenging. Previous work on the perception of transparency has focused on objects composed of flat, infinitely thin filters. In the experiments reported here, we considered thick transparent objects, such as ice cubes, which are irregular in shape and can vary i…Read more
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1Changes in perceived object shape with changes in lighting model and surface propertiesIn Enrique Villanueva (ed.), Perception, Ridgeview Pub. Co. pp. 48-49. 1996.
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122Decision making, movement planning and statistical decision theoryTrends in Cognitive Sciences 12 (8): 291-297. 2008.
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107Statistical decision theory and biological visionIn D. Heyer (ed.), Perception and the Physical World: Psychological and Philosophical Issues in Perception, John Wiley and Sons. pp. 145--189. 2002.
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3Surface colour perception and environmental constraintsIn Rainer Mausfeld & Dieter Heyer (eds.), Colour Perception: Mind and the Physical World, Oxford University Press. pp. 279--300. 2003.
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118A mathematical framework for biological color visionBehavioral and Brain Sciences 15 (1): 45-46. 1992.
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66Surface color perception in constrained environmentsBehavioral and Brain Sciences 26 (1): 38-39. 2003.Byrne & Hilbert propose that color can be identified with explicit properties of physical surfaces. I argue that this claim must be qualified to take into account constraints needed to make recovery of surface color information possible. When these constraints are satisfied, then a biological visual system can establish a correspondence between perceived surface color and specific surface properties
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New York UniversityProfessor
Greenwich Village, New York, United States of America