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首页> 外文期刊>NeuroImage >Small-world directed networks in the human brain: multivariate Granger causality analysis of resting-state fMRI.
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Small-world directed networks in the human brain: multivariate Granger causality analysis of resting-state fMRI.

机译:人脑中的小世界定向网络:静态fMRI的多变量Granger因果关系分析。

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摘要

Small-world organization is known to be a robust and consistent network architecture, and is a hallmark of the structurally and functionally connected human brain. However, it remains unknown if the same organization is present in directed influence brain networks whose connectivity is inferred by the transfer of information from one node to another. Here, we aimed to reveal the network architecture of the directed influence brain network using multivariate Granger causality analysis and graph theory on resting-state fMRI recordings. We found that some regions acted as pivotal hubs, either being influenced by or influencing other regions, and thus could be considered as information convergence regions. In addition, we observed that an exponentially truncated power law fits the topological distribution for the degree of total incoming and outgoing connectivity. Furthermore, we also found that this directed network has a modular structure. More importantly, according to our data, we suggest that the human brain directed influence network could have a prominent small-world topological property.
机译:小世界组织众所周知是一种健壮且一致的网络体系结构,并且是人类大脑在结构和功能上相互连接的标志。但是,尚不清楚在定向影响力大脑网络中是否存在同一组织,该组织的连通性是通过信息从一个节点到另一个节点的传输来推断的。在这里,我们旨在揭示静态影响fMRI记录使用多元格兰杰因果关系分析和图论的定向影响脑网络的网络体系结构。我们发现某些区域充当枢纽枢纽,受到其他区域的影响或影响,因此可以被视为信息融合区域。另外,我们观察到幂截断幂律适合总传入和传出连接程度的拓扑分布。此外,我们还发现该定向网络具有模块化结构。更重要的是,根据我们的数据,我们建议人脑直接影响网络可能具有突出的小世界拓扑特性。

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