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Selective Pruning of More Active Afferents When Cat Visual Cortex Is Pharmacologically Inhibited

NeuronPublished 1 February 1999Open access
Yoshio Hata, Tadaharu Tsumoto, Michael P. Stryker
Citations81
SJR quartileQ1
SJR score6.75
SNIP2.95
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TL;DR

This work pharmacologically inhibited the activity of visual cortical cells and measured the three-dimensional structure of inputs serving the two eyes when one eye was occluded, demonstrating in vivo that it is not the amount of afferent activity but the correlation between cortical and afferentActivity that regulates the growth or retraction of these inputs.

Abstract

Activity-dependent competition is thought to guide the normal development of specific patterns of neural connections. Such competition generally favors more active inputs, making them larger and stronger, while less active inputs become smaller and weaker. We pharmacologically inhibited the activity of visual cortical cells and measured the three-dimensional structure of inputs serving the two eyes when one eye was occluded. The more active inputs serving the open eye actually became smaller than the deprived inputs from the occluded eye, which were similar to those in normal animals. These findings demonstrate in vivo that it is not the amount of afferent activity but the correlation between cortical and afferent activity that regulates the growth or retraction of these inputs.

Keywords

NeuroscienceBiochemistry, Genetics and Molecular Biology