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Experimental Neurology|July 1, 1988
Midsagittal transection of the optic chiasm and the corpus callosum induces visual split brain in cats: the effect on ocular dominance and responsiveness to cells in the visual cortexU Yinon, M Chen, A HammerExperimental Brain Research|January 1, 1988
Split chiasm developmentally induced in kittens: plasticity of interhemispheric transfer in visual cortex cellsU Yinon, M Chen, A HammerBrain Research|May 14, 1990
Post-critical period plasticity of callosal transfer to visual cortex cells of cats following early conditioning of monocular deprivation and late optic chiasm transectionU Yinon, A HammerExperimental Brain Research|January 1, 1985
Optic chiasm split and binocularity diminution in cortical cells of acute and of chronic operated adult catsU Yinon, A HammerBrain Research|January 28, 1982
The hemispheric dominance of cortical cells in the absence of direct visual pathwaysU Yinon, A Hammer, M PodellExperimental Brain Research|January 1, 1984
Properties of visual cortical cells of the intact and the deafferented hemisphere of unilateral optic tract sectioned acute and chronic adult catsM Podell, U Yinon, A HammerBehavioural Brain Research|October 1, 1988
Visual split brain and monocular deprivation in kittens: differentiation between the effects of disuse and of binocular competition in visual cortex cellsU Yinon, M ChenMetabolic, Pediatric, and Systemic Ophthalmology (New York, N.Y. : 1985)|January 1, 1988
Split brain acutely and chronically induced in cats causes ipsilateral eye dominance and reduced excitability of cells in the visual cortexU Yinon, M ChenBrain Research Bulletin|November 1, 1990
Hydrocephalus in developing cats: physiological properties of visual cortex cellsU Yinon, M Chen, A MilgramBrain Research Bulletin|November 1, 1992
Binocularity and excitability loss in visual cortex cells of corpus callosum transected kittens and catsU Yinon, M Chen, S GelersteinPageof 786