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Traumatic brain injury impairs small-world topology.

Abstract:
OBJECTIVE: We test the hypothesis that brain networks associated with cognitive function shift away from a "small-world" organization following traumatic brain injury (TBI). METHODS: We investigated 20 TBI patients and 21 age-matched controls. Resting-state functional MRI was used to study functional connectivity. Graph theoretical analysis was then applied to partial correlation matrices derived from these data. The presence of white matter damage was quantified using diffusion tensor imaging. RESULTS: Patients showed characteristic cognitive impairments as well as evidence of damage to white matter tracts. Compared to controls, the graph analysis showed reduced overall connectivity, longer average path lengths, and reduced network efficiency. A particular impact of TBI is seen on a major network hub, the posterior cingulate cortex. Taken together, these results confirm that a network critical to cognitive function shows a shift away from small-world characteristics. CONCLUSIONS: We provide evidence that key brain networks involved in supporting cognitive function become less small-world in their organization after TBI. This is likely to be the result of diffuse white matter damage, and may be an important factor in producing cognitive impairment after TBI.

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Publisher copy:
10.1212/wnl.0b013e3182929f38

Authors


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Institution:
University of Oxford
Division:
MSD
Department:
Experimental Psychology
Role:
Author


Journal:
Neurology More from this journal
Volume:
80
Issue:
20
Pages:
1826-1833
Publication date:
2013-05-01
DOI:
EISSN:
1526-632X
ISSN:
0028-3878


Language:
English
Keywords:
Pubs id:
pubs:401609
UUID:
uuid:46a28784-7088-44f5-a6c3-b91d297b5b0e
Local pid:
pubs:401609
Source identifiers:
401609
Deposit date:
2014-02-08

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