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A weighted small world network measure for assessing functional connectivity.

机译:用于评估功能连通性的加权小世界网络测量。

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There is a growing need to develop measures that can characterize complex patterns of functional connectivity among brain regions. Graph theoretic measures have emerged as an important way to characterize the multivariate connectivity between nodes in a network, which have been successfully applied to neurophysiologic activity. In this paper, we propose a new small-world measure based on advances in both the bivariate measures underlying the graph theoretic approach, as well as in the definition of the measure for weighted graphs. Specifically, we recently proposed a new bivariate time-frequency phase-synchrony (TFPS) measure, which quantifies the dynamic nature of the interactions between neuronal oscillations with a higher time-frequency resolution than previous approaches and is better at isolating relevant activity. The proposed graph theoretic measures, weighted clustering coefficient and path length, represent a new approach to the calculation of weighted graph measures based on this improved bivariate TFPS measure. The new graph theoretic measures are applied to two datasets. The first is a well-known social network, Zachary's Karate Club. The second application contains event-related potential (ERP) indexing the well-known error-related negativity (ERN) component related to cognitive control. Results indicate that the new measures outperform the previously published weighted graph measures, and produces expectable results for both applications.
机译:越来越需要开发能够表征脑区之间的功能连通模式的措施。图表理论措施已成为表征网络中节点之间的多变量连接的重要途径,这些方法已成功应用于神经生理活动。在本文中,我们提出了一种基于图形理论方法底层底层的双方措施的进步的新的小世界措施,以及加权图测量的定义。具体而言,我们最近提出了一种新的双偏见时频相同步(TFP)测量,其量化神经元振荡之间的相互作用的动态性质,其具有比以前的方法更高的时间频率分辨率,并且在隔离相关活动时更好。所提出的图形理论测量,加权聚类系数和路径长度,代表了一种基于这种改进的双变量TFPS测量来计算加权图测量的新方法。新图形理论对措施应用于两个数据集。第一个是一家着名的社会网络,扎卡里的空手道俱乐部。第二个应用程序包含与与认知控制相关的众所周知的错误相关的消极性(ERN)组件索引的事件相关的潜在(ERP)。结果表明,新措施优于先前已发布的加权图测量,并为这两个应用程序产生期望的结果。

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