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      Experience-Dependent Plasticity of Binocular Responses in the Primary Visual Cortex of the Mouse

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          Abstract

          An activity-dependent form of synaptic plasticity underlies the fine tuning of connections in the developing primary visual cortex of mammals such as the cat and monkey. Studies of the effects of manipulations of visual experience during a critical period have demonstrated that a correlation-based competitive process governs this plasticity. The cellular mechanisms underlying this competition, however, are poorly understood. Transgenic and gene-targeting technologies have led to the development of a new category of reagents that have the potential to help answer questions of cellular mechanism, provided that the questions can be studied in a mouse model. The current study attempts to characterize a developmental plasticity in the mouse primary visual cortex and to demonstrate its relevance to that found in higher mammals. We found that 4 d of monocular lid suture at postnatal day 28 (P28) induced a maximal loss of responsiveness of cortical neurons to the deprived eye. These ocular dominance shifts occurred during a well-defined critical period, between P19 and P32. Furthermore, binocular deprivation during this critical period did not decrease visual cortical responses, and alternating monocular deprivation resulted in a decrease in the number of binocularly responsive neurons. Finally, a laminar analysis demonstrated plasticity of both geniculocortical and intracortical connections. These results demonstrate that an activity-dependent, competitive form of synaptic plasticity that obeys correlation-based rules operates in the developing primary visual cortex of the mouse.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          jneurosci
          J. Neurosci
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          15 May 1996
          : 16
          : 10
          : 3274-3286
          Affiliations
          [ 1 ]Neuroscience Graduate Program, and W. M. Keck Foundation Center for Integrative Neuroscience, Department of Physiology, University of California, San Francisco, California 94143-0444
          Article
          PMC6579137 PMC6579137 6579137
          10.1523/JNEUROSCI.16-10-03274.1996
          6579137
          8627365
          d9b6f6b8-3c49-4781-a5ab-46d52ac78ce4
          Copyright © 1996 Society for Neuroscience
          History
          : 8 November 1995
          : 7 February 1996
          : 19 February 1996
          Categories
          Articles

          ocular dominance,binocular deprivation,neural plasticity,monocular deprivation,critical period,development,mouse,visual cortex

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