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Redundancy as a Graph-Based Index of Frequency Specific MEG Functional Connectivity

机译:冗余作为特定频率的MEG功能连接的基于图的索引

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摘要

We used a recently proposed graph index to investigate connectivity redundancy in resting state MEG recordings. Usually, brain network analyses consider indexes linked to the shortest paths between cerebral regions. However, important information might be lost about alternative trails by neglecting longer pathways. We measured the redundancy of the connectivity by considering the multiple paths at the global level (i.e., scalar redundancy), across different path lengths (i.e., vector redundancy), and between node pairs (i.e., matrix redundancy). We applied this approach to a robust frequency domain functional connectivity measure, the corrected imaginary part of coherence. The redundancy in the MEG networks, for each frequency band, was significantly (P < 0.05) higher than in the random graphs, thus, confirming a natural tendency of the brain to present multiple interaction pathways between different specialized areas. Notably, this difference was more evident and localized among the channels covering the parietooccipital areas in the alpha range of MEG oscillations (7.5–13 Hz), as expected in the resting state conditions. Interestingly enough, the results obtained with the redundancy indexes were poorly correlated with those obtained using shortest paths only, and more sensitive with respect to those obtained by considering walk-based indexes.
机译:我们使用了最近提出的图形索引来研究静态MEG记录中的连接冗余。通常,大脑网络分析会考虑与大脑区域之间最短路径相关的指标。但是,忽略更长的路径可能会丢失有关替代路线的重要信息。我们通过考虑全局级别,跨不同路径长度(即矢量冗余)以及节点对之间(即矩阵冗余)的多条路径(即标量冗余)来测量连通性的冗余性。我们将此方法应用于稳健的频域功能连接性度量,即相干性的校正虚部。对于每个频带,MEG网络中的冗余度均比随机图中的冗余度高(P <0.05),因此证实了大脑在不同专业区域之间呈现多种相互作用途径的自然趋势。值得注意的是,这种差异更加明显,并且位于静止状态条件下预期的MEG振荡的α范围(7.5–13 Hz)中覆盖顶枕区域的通道之间。有趣的是,使用冗余索引获得的结果与仅使用最短路径获得的结果之间的相关性较差,相对于考虑基于步行的索引获得的结果更敏感。

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