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皮质脑回形成的几何结构与白质网络架构之间的关系。

Relations between the geometry of cortical gyrification and white-matter network architecture.

作者信息

Henderson James A, Robinson Peter A

机构信息

School of Physics, University of Sydney , Sydney, New South Wales, Australia .

出版信息

Brain Connect. 2014 Mar;4(2):112-30. doi: 10.1089/brain.2013.0183.

Abstract

A geometrically based network model of cortico-cortical white-matter connectivity is used in combination with diffusion spectrum MRI (DSI) data to show that white-matter cortical network architecture is founded on a homogeneous, isotropic geometric connection principle. No other special information about single connections or groups of connections is required to generate networks very similar to experimental ones. This model provides excellent agreement with experimental DSI frequency distributions of network measures-degree, clustering coefficient, path length, and betweenness centrality. In the model, these distributions are a result of geometrically induced spatial variations in the values of these measures with deep nodes having more hublike properties than superficial nodes. This leads to experimentally testable predictions of corresponding variations in real cortexes. The convoluted geometry of the cortex is also found to introduce weak modularity, similar to the lobe structure of the cortex, with the boundaries between modules having hublike properties. These findings mean that some putative discoveries regarding the structure of white-matter cortical networks are simply artifacts and/or consequences of geometry. This model may help provide insight into diseases associated with differences in gyrification as well as evolutionary development of the cortex.

摘要

基于几何的皮质-皮质白质连接网络模型与扩散光谱磁共振成像(DSI)数据相结合,以表明白质皮质网络架构基于均匀、各向同性的几何连接原理。生成与实验网络非常相似的网络不需要关于单个连接或连接组的其他特殊信息。该模型与网络测量指标——度、聚类系数、路径长度和中介中心性的实验DSI频率分布具有极好的一致性。在该模型中,这些分布是这些指标值在几何上引起的空间变化的结果,深层节点比表层节点具有更多中心节点的特性。这导致了对真实皮质中相应变化的可实验验证的预测。还发现皮质的复杂几何形状引入了弱模块化,类似于皮质的叶结构,模块之间的边界具有中心节点的特性。这些发现意味着一些关于白质皮质网络结构的假定发现仅仅是几何结构的伪像和/或结果。该模型可能有助于深入了解与脑回化差异相关的疾病以及皮质的进化发展。

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