An EEG Study of Brain Connectivity Dynamics at the Resting State

被引:0
作者
Dimitriadis, Stavros I. [1 ,2 ]
Laskaris, Nikolaos A. [2 ]
Tsirka, Vasso
Vourkas, Michael [3 ,4 ]
Micheloyannis, Sifis [3 ]
机构
[1] Univ Patras, Dept Phys, Elect Lab, Patras 26500, Greece
[2] Aristotle Univ Thessaloniki, GR-54006 Thessaloniki, Greece
[3] Univ Crete, Rethimnon, Greece
[4] Tech High Sch Crete, Khania, Greece
关键词
phase synchrony; evolving graphs; modularity; hubs; segregation motifs; DEFAULT MODE NETWORK; FUNCTIONAL CONNECTIVITY; RESOLUTION; FMRI; SYNCHRONIZATION; PERFORMANCE; SIGNATURES;
D O I
暂无
中图分类号
O1 [数学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 0701 ; 070101 ;
摘要
We investigated the dynamical behavior of resting state functional connectivity using EEG signals. Employing a recently introduced methodology that considers the time variations of phase coupling among signals from different channels, a sequence of functional connectivity graphs (FCGs) was constructed for different frequency bands and analyzed based on graph theoretic tools. In the first stage of analysis, hubs were detected in the FCGs based on local and global efficiency. The probability of each node to be identified as a hub was estimated. This defined a topographic function that showed widespread distribution with prominence over the frontal brain regions for both local and global efficiency. Hubs consistent across time were identified via a summarization technique and found to locate over forehead. In the second stage of analysis, the modular structure of each single FCG was delineated. The derived time-dependent signatures of functional structure were compared in a systematic way revealing fluctuations modulated by frequency. Interestingly, the evolution of functional connectivity can be described via abrupt transitions between states, best described as short-lasting bimodal functional segregations. Based on a distance function that compares clusterings, we discovered that these segregations are recurrent. Entropic measures further revealed that the apparent fluctuations are subject to intrinsic constraints and that order emerges from spatially extended interactions.
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页码:5 / 22
页数:18
相关论文
共 46 条
[1]   Efficiency and cost of economical brain functional networks [J].
Achard, Sophie ;
Bullmore, Edward T. .
PLOS COMPUTATIONAL BIOLOGY, 2007, 3 (02) :174-183
[2]  
[Anonymous], 1969, Hans Berger on the electroencephalogram of man. Electroencephalogr. Clin. Neurophysiol.
[3]  
[Anonymous], 2001, Brain and Mind
[4]   Estimation of the effective and functional human cortical connectivity with structural equation modeling and directed transfer function applied to high-resolution EEG [J].
Astolfi, L ;
Cincotti, F ;
Mattia, D ;
Salinari, S ;
Babiloni, C ;
Basilisco, A ;
Rossini, PM ;
Ding, L ;
Ni, Y ;
He, B ;
Marciani, MG ;
Babiloni, F .
MAGNETIC RESONANCE IMAGING, 2004, 22 (10) :1457-1470
[5]   Estimation of the cortical functional connectivity with the multimodal integration of high-resolution EEG and fMRI data by directed transfer function [J].
Babiloni, F ;
Cincotti, F ;
Babiloni, C ;
Carducci, F ;
Mattia, D ;
Astolfi, L ;
Basilisco, A ;
Rossini, PM ;
Ding, L ;
Ni, Y ;
Cheng, J ;
Christine, K ;
Sweeney, J ;
He, B .
NEUROIMAGE, 2005, 24 (01) :118-131
[6]   Adaptive reconfiguration of fractal small-world human brain functional networks [J].
Bassettt, Danielle S. ;
Meyer-Lindenberg, Andreas ;
Achard, Sophie ;
Duke, Thomas ;
Bullmore, Edward T. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (51) :19518-19523
[7]   Complex networks: Structure and dynamics [J].
Boccaletti, S. ;
Latora, V. ;
Moreno, Y. ;
Chavez, M. ;
Hwang, D. -U. .
PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 2006, 424 (4-5) :175-308
[8]   Effects of model-based physiological noise correction on default mode network anti-correlations and correlations [J].
Chang, Catie ;
Glover, Gary H. .
NEUROIMAGE, 2009, 47 (04) :1448-1459
[9]   EEG default mode network in the human brain: Spectral regional field powers [J].
Chen, Andrew C. N. ;
Feng, Weijia ;
Zhao, Huixuan ;
Yin, Yanling ;
Wang, Peipei .
NEUROIMAGE, 2008, 41 (02) :561-574
[10]  
Cordes D, 2001, AM J NEURORADIOL, V22, P1326