Sensory stimulation shifts visual cortex from synchronous to asynchronous states

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Sensory stimulation shifts visual cortex from synchronous to asynchronous states is …
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scholarly articleQ13442814

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P6179Dimensions Publication ID1014657146
P356DOI10.1038/NATURE13159
P932PMC publication ID4067243
P698PubMed publication ID24695217
P5875ResearchGate publication ID261327008

P50authorEyal SeidemannQ71763633
Andrew TanQ86883255
P2093author name stringBenjamin Scholl
Nicholas J Priebe
Yuzhi Chen
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Attention improves performance primarily by reducing interneuronal correlations.Q42918340
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Chaotic balanced state in a model of cortical circuits.Q48414434
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Orientation tuning curves: empirical description and estimation of parameters.Q48501330
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Correlating whisker behavior with membrane potential in barrel cortex of awake mice.Q48582556
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Chaos in neuronal networks with balanced excitatory and inhibitory activity.Q48831136
Synaptic interactions between primate precentral cortex neurons revealed by spike-triggered averaging of intracellular membrane potentials in vivo.Q48857252
Synaptic shot noise and conductance fluctuations affect the membrane voltage with equal significance.Q48930290
Stimulus dependence of neuronal correlation in primary visual cortex of the macaque.Q48939673
The high-conductance state of cortical networks.Q51899615
Activity dynamics and propagation of synchronous spiking in locally connected random networks.Q52105417
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Firing-rate response of a neuron receiving excitatory and inhibitory synaptic shot noiseQ83187525
P433issue7499
P407language of work or nameEnglishQ1860
P304page(s)226-229
P577publication date2014-03-30
P1433published inNatureQ180445
P1476titleSensory stimulation shifts visual cortex from synchronous to asynchronous states
P478volume509

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