Functionally Linked Resting-State Networks Reflect the Underlying Structural Connectivity Architecture of the Human Brain

被引:784
作者
van den Heuvel, Martijn P. [1 ]
Mandl, Rene C. W. [1 ]
Kahn, Rene S. [1 ]
Pol, Hilleke E. Hulshoff [1 ]
机构
[1] Univ Med Ctr Utrecht, Rudolf Magnus Inst Neurosci, NL-3508 GA Utrecht, Netherlands
关键词
anatomical connectivity; connectivity; DTI; diffusion tensor imaging; fMRI; functional connectivity; resting-state fMRI; resting-state connectivity; white matter; LOW-FREQUENCY FLUCTUATIONS; MATTER DENSITY CHANGES; SMALL-WORLD NETWORKS; DEFAULT-MODE; CEREBRAL-CORTEX; MOTOR CORTEX; DIFFUSION; SCHIZOPHRENIA; MRI; CINGULUM;
D O I
10.1002/hbm.20737
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
During rest, multiple cortical brain regions are functionally linked forming resting-state networks. This high level Of functional connectivity within resting-state networks suggests the existence of direct neuroanatomical connections between these functionally linked brain regions to facilitate the ongoing interregional neuronal communication. White matter tracts are the structural highways of our brain, enabling information to travel quickly from one brain region to another region. In this study, we examined both the functional and structural connections of the human brain in a group of 26 healthy Subjects, combining 3 Tesla resting-state functional magnetic resonance imaging time-series with diffusion tensor imaging scans. Nine consistently found functionally linked resting-state networks were retrieved from the resting-state data. The diffusion tensor imaging scans were used to reconstruct the white matter pathways between the functionally linked brain areas of these resting-state networks. Our results show that well-known anatomical white matter tracts interconnect at least eight of the nine commonly found resting-state networks, including the default mode network, the core network, primary motor and Visual network, and two lateralized parietal-frontal networks. Our results Suggest that the functionally linked resting-state networks reflect the underlying structural connectivity architecture of the human brain. Hunt Brain Mapp 30:3127-3141, 2009. (C) 2009 Wiley-Liss. Inc.
引用
收藏
页码:3127 / 3141
页数:15
相关论文
共 86 条
[1]   A resilient, low-frequency, small-world human brain functional network with highly connected association cortical hubs [J].
Achard, S ;
Salvador, R ;
Whitcher, B ;
Suckling, J ;
Bullmore, ET .
JOURNAL OF NEUROSCIENCE, 2006, 26 (01) :63-72
[2]   Efficiency and cost of economical brain functional networks [J].
Achard, Sophie ;
Bullmore, Edward T. .
PLOS COMPUTATIONAL BIOLOGY, 2007, 3 (02) :174-183
[3]   DYNAMICS OF NEURONAL FIRING CORRELATION - MODULATION OF EFFECTIVE CONNECTIVITY [J].
AERTSEN, AMHJ ;
GERSTEIN, GL ;
HABIB, MK ;
PALM, G .
JOURNAL OF NEUROPHYSIOLOGY, 1989, 61 (05) :900-917
[4]   A model-based method for retrospective correction of geometric distortions in diffusion-weighted EPI [J].
Andersson, JLR ;
Skare, S .
NEUROIMAGE, 2002, 16 (01) :177-199
[5]   How to correct susceptibility distortions in spin-echo echo-planar images: application to diffusion tensor imaging [J].
Andersson, JLR ;
Skare, S ;
Ashburner, J .
NEUROIMAGE, 2003, 20 (02) :870-888
[6]   Disruption of large-scale brain systems in advanced aging [J].
Andrews-Hanna, Jessica R. ;
Snyder, Abraham Z. ;
Vincent, Justin L. ;
Lustig, Cindy ;
Head, Denise ;
Raichle, Marcus E. ;
Buckner, Randy L. .
NEURON, 2007, 56 (05) :924-935
[7]  
Basser PJ, 2000, MAGNET RESON MED, V44, P625, DOI 10.1002/1522-2594(200010)44:4<625::AID-MRM17>3.0.CO
[8]  
2-O
[9]   WATER DIFFUSION IN THE GIANT-AXON OF THE SQUID - IMPLICATIONS FOR DIFFUSION-WEIGHTED MRI OF THE NERVOUS-SYSTEM [J].
BEAULIEU, C ;
ALLEN, PS .
MAGNETIC RESONANCE IN MEDICINE, 1994, 32 (05) :579-583
[10]   Investigations into resting-state connectivity using independent component analysis [J].
Beckmann, CF ;
DeLuca, M ;
Devlin, JT ;
Smith, SM .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2005, 360 (1457) :1001-1013