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Brain functional networks become more connected as amyotrophic lateral sclerosis progresses: a source level magnetoencephalographic study

机译:随着肌萎缩性侧索硬化的发展,大脑功能网络之间的联系更加紧密:一项源于脑磁图的研究

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This study hypothesizes that the brain shows hyper connectedness as amyotrophic lateral sclerosis (ALS) progresses. 54 patients (classified as “early stage” or “advanced stage”) and 25 controls underwent magnetoencephalography and MRI recordings. The activity of the brain areas was reconstructed, and the synchronization between them was estimated in the classical frequency bands using the phase lag index. Brain topological metrics such as the leaf fraction (number of nodes with degree of 1), the degree divergence (a measure of the scale-freeness) and the degree correlation (a measure of disassortativity) were estimated. Betweenness centrality was used to estimate the centrality of the brain areas.In all frequency bands, it was evident that, the more advanced the disease, the more connected, scale-free and disassortative the brain networks. No differences were evident in specific brain areas. Such modified brain topology is sub-optimal as compared to controls. Within this framework, our study shows that brain networks become more connected according to disease staging in ALS patients.
机译:这项研究假设,随着肌萎缩性侧索硬化症(ALS)的发展,大脑显示出高度连通性。 54例患者(分为“早期”或“晚期”)和25例对照进行了脑磁图和MRI记录。重建大脑区域的活动,并使用相位滞后指数在经典频段中估计它们之间的同步。估计了大脑的拓扑指标,例如叶片分数(度数为1的结点数),度数散度(无标度的度量)和度数相关性(离散度的度量)。中间性中心度被用来估计大脑区域的中心性。在所有频带中,很明显,疾病越严重,大脑网络的连通性,无标度和分解性就越高。在特定的大脑区域没有明显差异。与对照相比,这种修饰的脑拓扑是次优的。在此框架内,我们的研究表明,根据ALS患者的疾病分期,大脑网络变得更加紧密。

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