Spectral fingerprints of large-scale neuronal interactions.

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Spectral fingerprints of large-scale neuronal interactions. / Siegel, Markus; Donner, Tobias H; Engel, Andreas K.

In: NAT REV NEUROSCI, Vol. 13, No. 2, 2, 2012, p. 121-134.

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@article{6f75162dd1db429cb489cfebaa63ae53,
title = "Spectral fingerprints of large-scale neuronal interactions.",
abstract = "Cognition results from interactions among functionally specialized but widely distributed brain regions; however, neuroscience has so far largely focused on characterizing the function of individual brain regions and neurons therein. Here we discuss recent studies that have instead investigated the interactions between brain regions during cognitive processes by assessing correlations between neuronal oscillations in different regions of the primate cerebral cortex. These studies have opened a new window onto the large-scale circuit mechanisms underlying sensorimotor decision-making and top-down attention. We propose that frequency-specific neuronal correlations in large-scale cortical networks may be 'fingerprints' of canonical neuronal computations underlying cognitive processes.",
keywords = "Animals, Humans, *Brain Mapping, Cognition/physiology, Neurons/classification/*physiology, Neural Pathways/blood supply/physiology, Brain/blood supply/*cytology/physiology, Nerve Net/cytology/*physiology, Animals, Humans, *Brain Mapping, Cognition/physiology, Neurons/classification/*physiology, Neural Pathways/blood supply/physiology, Brain/blood supply/*cytology/physiology, Nerve Net/cytology/*physiology",
author = "Markus Siegel and Donner, {Tobias H} and Engel, {Andreas K.}",
year = "2012",
language = "English",
volume = "13",
pages = "121--134",
journal = "NAT REV NEUROSCI",
issn = "1471-003X",
publisher = "NATURE PUBLISHING GROUP",
number = "2",

}

RIS

TY - JOUR

T1 - Spectral fingerprints of large-scale neuronal interactions.

AU - Siegel, Markus

AU - Donner, Tobias H

AU - Engel, Andreas K.

PY - 2012

Y1 - 2012

N2 - Cognition results from interactions among functionally specialized but widely distributed brain regions; however, neuroscience has so far largely focused on characterizing the function of individual brain regions and neurons therein. Here we discuss recent studies that have instead investigated the interactions between brain regions during cognitive processes by assessing correlations between neuronal oscillations in different regions of the primate cerebral cortex. These studies have opened a new window onto the large-scale circuit mechanisms underlying sensorimotor decision-making and top-down attention. We propose that frequency-specific neuronal correlations in large-scale cortical networks may be 'fingerprints' of canonical neuronal computations underlying cognitive processes.

AB - Cognition results from interactions among functionally specialized but widely distributed brain regions; however, neuroscience has so far largely focused on characterizing the function of individual brain regions and neurons therein. Here we discuss recent studies that have instead investigated the interactions between brain regions during cognitive processes by assessing correlations between neuronal oscillations in different regions of the primate cerebral cortex. These studies have opened a new window onto the large-scale circuit mechanisms underlying sensorimotor decision-making and top-down attention. We propose that frequency-specific neuronal correlations in large-scale cortical networks may be 'fingerprints' of canonical neuronal computations underlying cognitive processes.

KW - Animals

KW - Humans

KW - Brain Mapping

KW - Cognition/physiology

KW - Neurons/classification/physiology

KW - Neural Pathways/blood supply/physiology

KW - Brain/blood supply/cytology/physiology

KW - Nerve Net/cytology/physiology

KW - Animals

KW - Humans

KW - Brain Mapping

KW - Cognition/physiology

KW - Neurons/classification/physiology

KW - Neural Pathways/blood supply/physiology

KW - Brain/blood supply/cytology/physiology

KW - Nerve Net/cytology/physiology

M3 - SCORING: Journal article

VL - 13

SP - 121

EP - 134

JO - NAT REV NEUROSCI

JF - NAT REV NEUROSCI

SN - 1471-003X

IS - 2

M1 - 2

ER -