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Weighted Phase Lag Index and Graph Analysis: Preliminary Investigation of Functional Connectivity during Resting State in Children

机译:加权相位滞后指数和图分析:儿童休息状态下的功能连通性的初步调查

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摘要

Resting state functional connectivity of MEG data was studied in 29 children (9-10 years old). The weighted phase lag index (WPLI) was employed for estimating connectivity and compared to coherence. To further evaluate the network structure, a graph analysis based on WPLI was used to determine clustering coefficient (C) and betweenness centrality (BC) as local coefficients as well as the characteristic path length (L) as a parameter for global interconnectedness. The network's modular structure was also calculated to estimate functional segregation. A seed region was identified in the central occipital area based on the power distribution at the sensor level in the alpha band. WPLI reveals a specific connectivity map different from power and coherence. BC and modularity show a strong level of connectedness in the occipital area between lateral and central sensors. C shows different isolated areas of occipital sensors. Globally, a network with the shortest L is detected in the alpha band, consistently with the local results. Our results are in agreement with findings in adults, indicating a similar functional network in children at this age in the alpha band. The integrated use of WPLI and graph analysis can help to gain a better description of resting state networks.
机译:MEG数据的静止状态功能连通性在29名儿童(9-10岁)中进行了研究。加权相位滞后指数(WPLI)用于估计连通性并与相干性进行比较。为了进一步评估网络结构,使用了基于WPLI的图形分析来确定聚类系数(C)和中间性(BC)作为局部系数,以及特征路径长度(L)作为全局互连的参数。还计算了网络的模块化结构,以估计功能隔离。根据alpha波段传感器级别的功率分布,在中央枕骨区域确定了一个种子区域。 WPLI揭示了一个特定的连接图,它不同于功能和一致性。 BC和模块性在枕骨区域的横向和中央传感器之间显示出很强的连通性。 C显示枕形传感器的不同隔离区域。在全球范围内,与本地结果一致,在alpha波段中检测到具有最短L的网络。我们的结果与成人的发现相符,表明该年龄段的儿童在alpha波段具有类似的功能网络。 WPLI和图形分析的集成使用可以帮助更好地描述静止状态网络。

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