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How the Statistical Validation of Functional Connectivity Patterns Can Prevent Erroneous Definition of Small-World Properties of a Brain Connectivity Network

机译:功能连接模式的统计验证如何防止错误定义大脑连接网络的小世界属性

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摘要

The application of Graph Theory to the brain connectivity patterns obtained from the analysis of neuroelectrical signals has provided an important step to the interpretation and statistical analysis of such functional networks. The properties of a network are derived from the adjacency matrix describing a connectivity pattern obtained by one of the available functional connectivity methods. However, no common procedure is currently applied for extracting the adjacency matrix from a connectivity pattern. To understand how the topographical properties of a network inferred by means of graph indices can be affected by this procedure, we compared one of the methods extensively used in Neuroscience applications (i.e. fixing the edge density) with an approach based on the statistical validation of achieved connectivity patterns. The comparison was performed on the basis of simulated data and of signals acquired on a polystyrene head used as a phantom. The results showed (i) the importance of the assessing process in discarding the occurrence of spurious links and in the definition of the real topographical properties of the network, and (ii) a dependence of the small world properties obtained for the phantom networks from the spatial correlation of the neighboring electrodes.
机译:图论在从神经电信号分析获得的大脑连接模式中的应用为这种功能网络的解释和统计分析提供了重要的一步。网络的属性是从邻接矩阵得出的,该邻接矩阵描述了通过可用功能连接方法之一获得的连接模式。但是,当前没有应用通用过程从连接模式中提取邻接矩阵。为了了解通过图形索引推断出的网络的拓扑特性如何受到此过程的影响,我们将神经科学应用中广泛使用的一种方法(即固定边缘密度)与基于已实现统计验证的方法进行了比较。连接模式。比较是基于模拟数据和在用作模体的聚苯乙烯头上获取的信号进行的。结果表明(i)评估过程在丢弃虚假链接的发生以及网络实际地形属性的定义中的重要性,以及(ii)从幻象网络获得的小世界属性的依赖性。相邻电极的空间相关性。

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