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Article

Disinhibition as a canonical neural mechanism for flexible behavior

2018-05-30

Abstract excerpt

Flexibility is a hallmark of human and animal behavior, but the context-dependent neural computations that generate flexible behavior are poorly understood. Here, we use a biophysically-based cortical network model to explore the hypothesis that vasoactive intestinal polypeptide (VIP) expressing inhibitory interneurons control local circuit dynamics by targeting other classes of inhibitory interneuron, supporting...

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Identifiers and source

Literature Corpus work
74670249-ccc1-52f6-8e59-51bd46c7f6f2
DOI
10.1101/334797
Open publication

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Disinhibition as a canonical neural mechanism for flexible behaviorDOI 10.1101/334797
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