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- W239789025 abstract "This chapter analyzes the results obtained from experiments that involved either reversibly inactivating different layers in the lateral geniculate nucleus (LGN) complex or inactivating portions of visual cortex to gain an insight into the cortical circuitry that supports visual perception. The demonstration that visual cortical neurons can continue to operate robustly and selectively in the face of significant loss of afferent input provides a different, albeit nonintuitive, view of the cortical neuron. An individual neuron possesses thousands of synapses. The results indicate that for many of these neurons, the ability to achieve threshold may be relatively easy, even under conditions of sudden silence by other (perhaps normally dominating) inputs. Once the dominating afferents are themselves silenced, the erstwhile silent inputs apparently become sufficiently powerful to exceed the threshold. The same cortical resources are dynamically exploited by different geniculate subdivisions depending on nighttime or daytime viewing conditions. The cortical neurons can undergo significant functional differentiation and yet retain full responsiveness and response selectivity previously believed to emerge from intracortical circuits." @default.
- W239789025 created "2016-06-24" @default.
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- W239789025 date "2002-01-01" @default.
- W239789025 modified "2023-09-27" @default.
- W239789025 title "Essential and Sustaining LGN Inputs to Cat Primary Visual Cortex" @default.
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- W239789025 doi "https://doi.org/10.1016/b978-012552104-8/50008-0" @default.
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