Literature DB >> 24094112

Plasticity of recurrent l2/3 inhibition and gamma oscillations by whisker experience.

Yu R Shao1, Brian R Isett, Toshio Miyashita, Jason Chung, Olivia Pourzia, Robert J Gasperini, Daniel E Feldman.   

Abstract

Local recurrent networks in neocortex are critical nodes for sensory processing, but their regulation by experience is much less understood than for long-distance (translaminar or cross-columnar) projections. We studied local L2/3 recurrent networks in rat somatosensory cortex during deprivation-induced whisker map plasticity, by expressing channelrhodopsin-2 (ChR2) in L2/3 pyramidal cells and measuring light-evoked synaptic currents in ex vivo S1 slices. In columns with intact whiskers, brief light impulses evoked recurrent excitation and supralinear inhibition. Deprived columns showed modestly reduced excitation and profoundly reduced inhibition, providing a circuit locus for disinhibition of whisker-evoked responses observed in L2/3 in vivo. Slower light ramps elicited sustained gamma frequency oscillations, which were nearly abolished in deprived columns. Reduction in gamma power was also observed in spontaneous LFP oscillations in L2/3 of deprived columns in vivo. Thus, L2/3 recurrent networks are a powerful site for homeostatic modulation of excitation-inhibition balance and regulation of gamma oscillations.
Copyright © 2013 Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 24094112      PMCID: PMC3792397          DOI: 10.1016/j.neuron.2013.07.026

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  72 in total

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Authors:  Georg Nagel; Martin Brauner; Jana F Liewald; Nona Adeishvili; Ernst Bamberg; Alexander Gottschalk
Journal:  Curr Biol       Date:  2005-12-20       Impact factor: 10.834

2.  Sensory experience alters specific branches of individual corticocortical axons during development.

Authors:  Randy M Bruno; Thomas T G Hahn; Damian J Wallace; Christiaan P J de Kock; Bert Sakmann
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Review 3.  Cortical plasticity: from synapses to maps.

Authors:  D V Buonomano; M M Merzenich
Journal:  Annu Rev Neurosci       Date:  1998       Impact factor: 12.449

4.  Pathway-specific feedforward circuits between thalamus and neocortex revealed by selective optical stimulation of axons.

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6.  GABAergic inhibition in visual cortical plasticity.

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7.  Driving fast-spiking cells induces gamma rhythm and controls sensory responses.

Authors:  Jessica A Cardin; Marie Carlén; Konstantinos Meletis; Ulf Knoblich; Feng Zhang; Karl Deisseroth; Li-Huei Tsai; Christopher I Moore
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8.  Selective reconfiguration of layer 4 visual cortical circuitry by visual deprivation.

Authors:  Arianna Maffei; Sacha B Nelson; Gina G Turrigiano
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