How networks communicate: propagation patterns in spontaneous brain activity

被引:82
作者
Mitra, Anish [1 ]
Raichle, Marcus E. [1 ,2 ]
机构
[1] Washington Univ, Dept Radiol, St Louis, MO 63110 USA
[2] Washington Univ, Dept Neurol, St Louis, MO 63110 USA
关键词
resting state; functional magnetic resonance imaging; dynamics; lags; network; propagation; RESTING-STATE FMRI; INTRINSIC FUNCTIONAL CONNECTIVITY; SHARP-WAVE-RIPPLES; AUTISM SPECTRUM DISORDERS; SLOW OSCILLATIONS; CORTICAL ACTIVITY; INTERHEMISPHERIC SYNCHRONY; GRANGER CAUSALITY; NEURONAL NETWORKS; DEFAULT NETWORK;
D O I
10.1098/rstb.2015.0546
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Initially regarded as 'noise', spontaneous (intrinsic) activity accounts for a large portion of the brain's metabolic cost. Moreover, it is now widely known that infra-slow (less than 0.1 Hz) spontaneous activity, measured using resting state functional magnetic resonance imaging of the blood oxygen level-dependent (BOLD) signal, is correlated within functionally defined resting state networks (RSNs). However, despite these advances, the temporal organization of spontaneous BOLD fluctuations has remained elusive. By studying temporal lags in the resting state BOLD signal, we have recently shown that spontaneous BOLD fluctuations consist of remarkably reproducible patterns of whole brain propagation. Embedded in these propagation patterns are unidirectional 'motifs' which, in turn, give rise to RSNs. Additionally, propagation patterns are markedly altered as a function of state, whether physiological or pathological. Understanding such propagation patterns will likely yield deeper insights into the role of spontaneous activity in brain function in health and disease. This article is part of the themed issue 'Interpreting blood oxygen level-dependent: a dialogue between cognitive and cellular neuroscience'.
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页数:9
相关论文
共 80 条
[1]   Global and structured waves of rs-fMRI signal identified as putative propagation of spontaneous neural activity [J].
Amemiya, Shiori ;
Takao, Hidemasa ;
Hanaoka, Shohei ;
Ohtomo, Kuni .
NEUROIMAGE, 2016, 133 :331-340
[2]   CNS energy metabolism as related to function [J].
Ames, A .
BRAIN RESEARCH REVIEWS, 2000, 34 (1-2) :42-68
[3]   OXYGEN AND GLUCOSE CONSUMPTION RELATED TO NA+-K+ TRANSPORT IN CANINE BRAIN [J].
ASTRUP, J ;
SORENSEN, PM ;
SORENSEN, HR .
STROKE, 1981, 12 (06) :726-730
[4]   An energy budget for signaling in the grey matter of the brain [J].
Attwell, D ;
Laughlin, SB .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2001, 21 (10) :1133-1145
[5]  
Berger H., 1969, ELECTROEN CLIN NEURO, P75
[6]   FUNCTIONAL CONNECTIVITY IN THE MOTOR CORTEX OF RESTING HUMAN BRAIN USING ECHO-PLANAR MRI [J].
BISWAL, B ;
YETKIN, FZ ;
HAUGHTON, VM ;
HYDE, JS .
MAGNETIC RESONANCE IN MEDICINE, 1995, 34 (04) :537-541
[7]   The brain's default network - Anatomy, function, and relevance to disease [J].
Buckner, Randy L. ;
Andrews-Hanna, Jessica R. ;
Schacter, Daniel L. .
YEAR IN COGNITIVE NEUROSCIENCE 2008, 2008, 1124 :1-38
[8]   The organization of the human cerebellum estimated by intrinsic functional connectivity [J].
Buckner, Randy L. ;
Krienen, Fenna M. ;
Castellanos, Angela ;
Diaz, Julio C. ;
Yeo, B. T. Thomas .
JOURNAL OF NEUROPHYSIOLOGY, 2011, 106 (05) :2322-2345
[9]   The hippocampo-neocortical dialogue [J].
Buzsaki, G .
CEREBRAL CORTEX, 1996, 6 (02) :81-92
[10]   Evolution amplified processing with temporally dispersed slow neuronal connectivity in primates [J].
Caminiti, Roberto ;
Ghaziri, Hassan ;
Galuske, Ralf ;
Hof, Patrick R. ;
Innocenti, Giorgio M. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (46) :19551-19556