arrow
Return

Oscillatory phase coupling coordinates anatomically dispersed functional cell assemblies

delete2010-09-20
delete248
delete
OA
AI
R
Ryan T. Canolty
K
Karunesh Ganguly
S
Steven W. Kennerley
C
Charles F. Cadieu
K
Kilian Koepsell
J
Joni D. Wallis
J
Jose M. Carmena *
DOI:10.1073/pnas.1008306107delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Hebb proposed that neuronal cell assemblies are critical for effective perception, cognition, and action. However, evidence for brain mechanisms that coordinate multiple coactive assemblies remains lacking. Neuronal oscillations have been suggested as one possible mechanism for cell assembly coordination. Prior studies have shown that spike timing depends upon local field potential (LFP) phase proximal to the cell body, but few studies have examined the dependence of spiking on distal LFP phases in other brain areas far from the neuron or the influence of LFP-LFP phase coupling between distal areas on spiking. We investigated these interactions by recording LFPs and single-unit activity using multiple microelectrode arrays in several brain areas and then used a unique probabilistic multivariate phase distribution to model the dependence of spike timing on the full pattern of proximal LFP phases, distal LFP phases, and LFP-LFP phase coupling between electrodes. Here we show that spiking activity in single neurons and neuronal ensembles depends on dynamic patterns of oscillatory phase coupling between multiple brain areas, in addition to the effects of proximal LFP phase. Neurons that prefer similar patterns of phase coupling exhibit similar changes in spike rates, whereas neurons with different preferences show divergent responses, providing a basic mechanism to bind different neurons together into coordinated cell assemblies. Surprisingly, phase-coupling-based rate correlations are independent of interneuron distance. Phase-coupling preferences correlate with behavior and neural function and remain stable over multiple days. These findings suggest that neuronal oscillations enable selective and dynamic control of distributed functional cell assemblies.
Keywords:
neuronal oscillations
neuronal ensembles
spike timing
local field potentials
brain rhythms
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

P
Proceedings of the National Academy of Sciences of the United States of America
IF:
9.1
Papers:
10.8W
Citations:
73.5W

Organization

University of California System cover
University of California System
Scholars:
37.7W
Papers: 33.8W
Citations: 6.6K
Cited Papers

Cited Papers

ACE2 is expressed in mouse adipocytes and regulated by a high-fat diet
err2008-09-01
err0
errOAAI
errManisha Gupte; Carine M. Boustany-Kari; Kalyani Bharadwaj; Sara Police; Sean Thatcher; Ming C. Gong; Victoria L. English; Lisa A. Cassis
errShare
errSave
Prevalence of cough during angiotensin-converting enzyme inhibitor therapy
err1988-12-01
err0
PREAI
errRobert C. Goldszer; Leonard S. Lilly; Harold S. Solomon
errShare
errSave
Cellular mechanisms of neuronal population oscillations in the hippocampus in vitro
err2004-07-21
err299
PREAI
errTraub, RD; Bibbig, A; LeBeau, FEN; Buhl, EH; Whittington, MA
errShare
errSave
Myosin Light Chain Kinase Knockout
err2004-04-01
err0
PREAI
errA.V. Somlyo; H. Wang; N. Choudhury; A.S. Khromov; M. Majesky; G.K. Owens; A.P. Somlyo
errShare
errSave
err
IF0
err
err0
PREAI
err
errShare
errSave
Prévalence et conséquences de la dénutrition au cours de la bronchite chronique de l’enfant
err2008-08-01
err0
PREAI
errS. Viola; M. Boulé; P. Tounian; L. Huyn Thi Hong; M. Medjadi; B. Fauroux; J.-P. Girardet
errShare
errSave
Absolute Quantification of Matrix Metabolites Reveals the Dynamics of Mitochondrial Metabolism
errCell
IF0
err2016-08-01
err0
errOAAI
errWalter W. Chen; Elizaveta Freinkman; Tim Wang; Kıvanç Birsoy; David M. Sabatini
errShare
errSave
researcher View more