精神分裂症(面向对象编程)
拓扑(电路)
功能磁共振成像
神经科学
模块化(生物学)
默认模式网络
人脑
功能连接
前额叶皮质
静息状态功能磁共振成像
计算机科学
心理学
生物
数学
组合数学
认知
进化生物学
精神科
作者
Aaron Alexander‐Bloch,Petra E. Vértes,Reva Stidd,François Lalonde,Liv Clasen,Judith L. Rapoport,Jay N. Giedd,Edward T. Bullmore,Nitin Gogtay
出处
期刊:Cerebral Cortex
[Oxford University Press]
日期:2012-01-23
卷期号:23 (1): 127-138
被引量:321
标识
DOI:10.1093/cercor/bhr388
摘要
The human brain is a topologically complex network embedded in anatomical space. Here, we systematically explored relationships between functional connectivity, complex network topology, and anatomical (Euclidean) distance between connected brain regions, in the resting-state functional magnetic resonance imaging brain networks of 20 healthy volunteers and 19 patients with childhood-onset schizophrenia (COS). Normal between-subject differences in average distance of connected edges in brain graphs were strongly associated with variation in topological properties of functional networks. In addition, a club or subset of connector hubs was identified, in lateral temporal, parietal, dorsal prefrontal, and medial prefrontal/cingulate cortical regions. In COS, there was reduced strength of functional connectivity over short distances especially, and therefore, global mean connection distance of thresholded graphs was significantly greater than normal. As predicted from relationships between spatial and topological properties of normal networks, this disorder-related proportional increase in connection distance was associated with reduced clustering and modularity and increased global efficiency of COS networks. Between-group differences in connection distance were localized specifically to connector hubs of multimodal association cortex. In relation to the neurodevelopmental pathogenesis of schizophrenia, we argue that the data are consistent with the interpretation that spatial and topological disturbances of functional network organization could arise from excessive "pruning" of short-distance functional connections in schizophrenia.
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