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Titlebook: Developmental Neurobiology of Vision; Ralph D. Freeman Book 1979 Springer Science+Business Media New York 1979 behavior.biology.brain.cort

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楼主: Callow
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Orientation-dependent Changes in Response Properties of Neurons in the Kitten’s Visual Cortex The other eye was either occluded or allowed normal vision. Physiological changes caused by the selective exposure were assessed by means of single-cell recording from striate cortex..In all cases the majority of neurons driven by the “cylinder eye” preferred the experienced orientation. When the s
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Evidence for a Central Control of Developmental Plasticity in the Striate Cortex of Kittenshe striate cortex of visually inexperienced cats and of cats raised with undisturbed binocular vision, the large majority of neurons are binocular and can be driven equally well from either eye (Hubel and Wiesel, 1962). When, however, vision is restricted to one eye during a critical period of early
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Lability of Directional Tuning and Ocular Dominance of Complex Cells in the Cat’s Visual Cortexure alone, were assessed in 62 complex cells from the infragranular layers of the striate cortex in normal adult cats, lightly anesthetized with N.O/O. and pentobarbitone..Directional bias for preferred versus opposite directions of motion was enhanced with texture; two-thirds of cells directionally
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Intrinsic Connectivity in Area 18 of the Cat electrical stimulation of the primary afferents were analyzed. The units’ laminar positions were assessed by evaluating current source densities along the same recording track on the way back to the cortical surface..Mono-, di-, and trisynaptic responses are discernible in the latency histogram aft
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Visual Cell X/Y Classifications: Characteristics and Correlations X or Y. The characteristics that have been tested include: linearity of spatial summation, response dynamics (temporal frequency tuning), action potential conduction velocity (axon diameter), receptive field center size (spatial frequency tuning), dendritic field size, cell body size, and receptive
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Functional Plasticity in the Mature Visual System: Changes of the Retino-geniculate Topography Afterontralateral lateral geniculate nucleus (LGN) of adult cats. Pre- and post-lesion fundus photography revealed well-preserved retinal geometry with negligible changes in the size and position of the lesion. The histology of the coagulated retina displayed a steep decay of all retinal layers at the bo
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