Neuronal avalanches in the resting MEG of the human brain

scientific article published on April 2013

Neuronal avalanches in the resting MEG of the human brain is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1523/JNEUROSCI.4286-12.2013
P932PMC publication ID3665287
P698PubMed publication ID23595765
P5875ResearchGate publication ID236225043

P50authorEdward T. BullmoreQ21062359
Dietmar PlenzQ89071926
Oren ShrikiQ41044173
Richard CoppolaQ48359378
P2093author name stringJeff Alstott
Richard N A Henson
Tom Holroyd
Marie L Smith
Frederick Carver
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Inverted-U profile of dopamine-NMDA-mediated spontaneous avalanche recurrence in superficial layers of rat prefrontal cortex.Q48456321
Spatiotemporal signal space separation method for rejecting nearby interference in MEG measurementsQ48609841
Recurrent infomax generates cell assemblies, neuronal avalanches, and simple cell-like selectivityQ48876261
Critical branching captures activity in living neural networks and maximizes the number of metastable StatesQ48958214
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Resting-state functional connectivity reflects structural connectivity in the default mode networkQ29616527
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Ongoing cortical activity at rest: criticality, multistability, and ghost attractors.Q34259592
Synchronous neural interactions assessed by magnetoencephalography: a functional biomarker for brain disorders.Q34721643
Information capacity and transmission are maximized in balanced cortical networks with neuronal avalanches.Q34864832
Magnetoencephalography as a putative biomarker for Alzheimer's diseaseQ34923627
Increased functional connectivity indicates the severity of cognitive impairment in multiple sclerosisQ35571424
Maximal variability of phase synchrony in cortical networks with neuronal avalanchesQ35871155
Neuronal avalanches organize as nested theta- and beta/gamma-oscillations during development of cortical layer 2/3Q36677167
The organizing principles of neuronal avalanches: cell assemblies in the cortex?Q36726808
Spontaneous cortical activity in awake monkeys composed of neuronal avalanches.Q37320735
Learning sculpts the spontaneous activity of the resting human brainQ37389061
Neuronal avalanches imply maximum dynamic range in cortical networks at criticality.Q37390161
Fractal complexity in spontaneous EEG metastable-state transitions: new vistas on integrated neural dynamicsQ41901728
Self-organized criticality occurs in non-conservative neuronal networks during Up statesQ42846566
Neuronal avalanches in neocortical circuits.Q47873994
P433issue16
P407language of work or nameEnglishQ1860
P921main subjectspike avalancheQ105080857
P304page(s)7079-7090
P577publication date2013-04-01
P1433published inJournal of NeuroscienceQ1709864
P1476titleNeuronal avalanches in the resting MEG of the human brain
P478volume33

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