The structural disconnectome: A pathology-sensitive extension of the structural connectome

C. Langen, M. Vernooij, L. Cremers, Wyke Huizinga, M. Groot, M. Ikram, T. White, W. Niessen
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引用次数: 3

Abstract

Brain connectivity is increasingly being studied using connectomes. Typical structural connectome definitions do not directly take white matter pathology into account. Presumably, pathology impedes signal transmission along fibres, leading to a reduction in function. In order to directly study disconnection and localize pathology within the connectome, we present the disconnectome, which only considers fibres that intersect with white matter pathology. To show the potential of the disconnectome in brain studies, we showed in a cohort of 4199 adults with varying loads of white matter lesions (WMLs) that: (1) Disconnection is not a function of streamline density; (2) Hubs are more affected by WMLs than peripheral nodes; (3) Connections between hubs are more severely and frequently affected by WMLs than other connection types; and (4) Connections between region clusters are often more severely affected than those within clusters.
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结构断连组:结构连接组的病理敏感延伸
越来越多的人使用连接体来研究大脑的连通性。典型的结构连接组定义不直接考虑白质病理学。据推测,病理阻碍了沿纤维的信号传递,导致功能下降。为了直接研究断连和定位连接组内的病理,我们提出了断连组,它只考虑与白质病理相交的纤维。为了显示断连组在脑研究中的潜力,我们对4199名患有不同白质病变(WMLs)的成年人进行了队列研究,结果表明:(1)断连不是流线密度的函数;(2) hub受wml的影响大于周边节点;(3)集线器之间的连接受wml的影响比其他类型的连接更严重、更频繁;(4)区域集群之间的连接往往比集群内部的连接受到更严重的影响。
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