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Transcript
Propriétés neuronales V4
Area A
Area B
Layers
1-2-3
Layer 4
Layer 4
Layers
5-6
Feedforward
Horizontales
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Barone, P., Batardiere, A., Knoblauch, K., and Kennedy, H. (2000). 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, J Neurosci 20, 3263-81.
Felleman, D. J., and Van Essen, D. C. (1987). Receptive field properties of neurons in
area V3 of macaque monkey extrastriate cortex, J Neurophysiol 57, 889-920.
V4
IT
Kobatake, E., and Tanaka, K. (1994). Neuronal selectivities to complex object features in the
ventral visual pathway of the macaque cerebral cortex, J Neurophysiol 71, 856-67.
Kobatake, E., and Tanaka, K. (1994). Neuronal selectivities to complex object features
in the ventral visual pathway of the macaque cerebral cortex, J Neurophysiol 71, 856-67.
Gallant, J. L., Connor, C. E., Rakshit, S., Lewis, J. W., and Van Essen, D. C. (1996). Neural responses to polar, hyperbolic,
and Cartesian gratings in area V4 of the macaque monkey, J Neurophysiol 76, 2718-39.
Moore, T. (1999). Shape representations and visual guidance of saccadic eye movements, Science 285, 1914-7.
Effet de lésions/inactivations de
V4
Merigan, W. H. (2000). Cortical area V4 is critical for certain texture discriminations,
but this effect is not dependent on attention, Vis Neurosci 17, 949-58.
Merigan, W. H., and Pham, H. A. (1998). V4 lesions in macaques affect both
single- and multiple-viewpoint shape discriminations, Vis Neurosci 15, 359-67