Key role of coupling, delay, and noise in resting brain fluctuations

被引:543
作者
Deco, Gustavo [1 ,2 ]
Jirsa, Viktor [3 ,4 ]
McIntosh, A. R. [5 ]
Sporns, Olaf [6 ]
Koetter, Rolf [7 ,8 ]
机构
[1] Inst Catalana Recerca & Estudis Avancats, Dept Computat Neurosci, Barcelona 08018, Spain
[2] Univ Pompeu Fabra, Barcelona 08018, Spain
[3] CNRS, Theoret Neurosci Grp, Unite Mixte Rech 6233, Inst Sci Mouvement, F-13288 Marseille 9, France
[4] Florida Atlantic Univ, Dept Phys, Ctr Complex Syst & Brain Sci, Boca Raton, FL 33431 USA
[5] Baycrest Ctr Geriatr Care, Rotman Res Inst, Toronto, ON M6A 2E1, Canada
[6] Indiana Univ, Dept Psychol & Brain Sci, Bloomington, IN 47401 USA
[7] Radboud Univ Nijmegen, Med Ctr, Donders Inst Brain Cognit & Behav, Dept Neurophysiol, NL-6500 HB Nijmegen, Netherlands
[8] Radboud Univ Nijmegen, Med Ctr, Donders Inst Brain Cognit & Behav, Dept Neuroinformat, NL-6500 HB Nijmegen, Netherlands
关键词
CEREBRAL-CORTEX; FUNCTIONAL CONNECTIVITY; NETWORKS; MODEL; POPULATIONS; DYNAMICS; DATABASE; COCOMAC; MRI;
D O I
10.1073/pnas.0901831106
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A growing body of neuroimaging research has documented that, in the absence of an explicit task, the brain shows temporally coherent activity. This so-called "resting state'' activity or, more explicitly, the default-mode network, has been associated with daydreaming, free association, stream of consciousness, or inner rehearsal in humans, but similar patterns have also been found under anesthesia and in monkeys. Spatiotemporal activity patterns in the default-mode network are both complex and consistent, which raises the question whether they are the expression of an interesting cognitive architecture or the consequence of intrinsic network constraints. In numerical simulation, we studied the dynamics of a simplified cortical network using 38 noise-driven (Wilson-Cowan) oscillators, which in isolation remain just below their oscillatory threshold. Time delay coupling based on lengths and strengths of primate corticocortical pathways leads to the emergence of 2 sets of 40-Hz oscillators. The sets showed synchronization that was anticorrelated at <0.1 Hz across the sets in line with a wide range of recent experimental observations. Systematic variation of conduction velocity, coupling strength, and noise level indicate a high sensitivity of emerging synchrony as well as simulated blood flow blood oxygen level-dependent (BOLD) on the underlying parameter values. Optimal sensitivity was observed around conduction velocities of 1-2 m/s, with very weak coupling between oscillators. An additional finding was that the optimal noise level had a characteristic scale, indicating the presence of stochastic resonance, which allows the network dynamics to respond with high sensitivity to changes in diffuse feedback activity.
引用
收藏
页码:10302 / 10307
页数:6
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