Literature DB >> 21209189

Information capacity and transmission are maximized in balanced cortical networks with neuronal avalanches.

Woodrow L Shew1, Hongdian Yang, Shan Yu, Rajarshi Roy, Dietmar Plenz.   

Abstract

The repertoire of neural activity patterns that a cortical network can produce constrains the ability of the network to transfer and process information. Here, we measured activity patterns obtained from multisite local field potential recordings in cortex cultures, urethane-anesthetized rats, and awake macaque monkeys. First, we quantified the information capacity of the pattern repertoire of ongoing and stimulus-evoked activity using Shannon entropy. Next, we quantified the efficacy of information transmission between stimulus and response using mutual information. By systematically changing the ratio of excitation/inhibition (E/I) in vitro and in a network model, we discovered that both information capacity and information transmission are maximized at a particular intermediate E/I, at which ongoing activity emerges as neuronal avalanches. Next, we used our in vitro and model results to correctly predict in vivo information capacity and interactions between neuronal groups during ongoing activity. Close agreement between our experiments and model suggest that neuronal avalanches and peak information capacity arise because of criticality and are general properties of cortical networks with balanced E/I.

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Year:  2011        PMID: 21209189      PMCID: PMC3082868          DOI: 10.1523/JNEUROSCI.4637-10.2011

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  33 in total

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  169 in total

1.  Higher-order interactions characterized in cortical activity.

Authors:  Shan Yu; Hongdian Yang; Hiroyuki Nakahara; Gustavo S Santos; Danko Nikolić; Dietmar Plenz
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2.  Maximal variability of phase synchrony in cortical networks with neuronal avalanches.

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6.  A coarse-grained framework for spiking neuronal networks: between homogeneity and synchrony.

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9.  Individual Cortical Entropy Profile: Test-Retest Reliability, Predictive Power for Cognitive Ability, and Neuroanatomical Foundation.

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Review 10.  Moment-to-moment brain signal variability: a next frontier in human brain mapping?

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