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Experimental Brain Research|January 1, 1982
Monocular deprivation in the Siamese cat: development of cortical orientation and direction sensitivity without visual experienceN Berman, B R PayneExperimental Brain Research|January 1, 1984
Contralateral corticofugal projections to cat visual thalamusB R Payne, N BermanBrain Research|July 30, 1984
Deafferentation and axotomy of neurons in cat striate cortex: time course of changes in binocularity following corpus callosum transectionB R Payne, H E Pearson, N BermanJournal of Neurophysiology|September 1, 1984
Role of corpus callosum in functional organization of cat striate cortexB R Payne, H E Pearson, N BermanExperimental Brain Research|January 1, 1981
A quantitative assessment of eye alignment in cats after corpus callosum transectionB R Payne, N Berman, E H MurphyBrain Research|May 4, 1981
Organization of direction preferences in cat visual cortexB R Payne, N Berman, E H MurphyJournal of Neurophysiology|December 1, 1982
Functional organization of neurons in cat striate cortex: variations in ocular dominance and receptive-field type with cortical laminae and location in visual fieldN Berman, B R Payne, D R Labar, et al.Science (New York, N.Y.)|March 7, 1980
Binocularity in the cat visual cortex is reduced by sectioning the corpus callosumB R Payne, A J Elberger, N Berman, et al.Visual Neuroscience|September 1, 1991
Visual-field map in the transcallosal sending zone of area 17 in the catB R PayneRestorative Neurology and Neuroscience|April 3, 2003
System-wide repercussions and adaptive plasticity: the sequelae of immature visual cortex damageB R PaynePageof 32