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EEG-based brain network analysis in stroke patients during a motor execution task

机译:运动执行任务期间中风患者的基于EEG的脑网络分析

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Post-stroke survivors often suffer motor function disorders, which are usually associated with anatomical and functional alterations of brain network. Previous EEG-based brain network analyses mainly focused on stroke-linked brain network in resting state and single aspect (globally or regionally), leaving the pattern of functional connectivity (FC) in stroke patients during specific motion task uncovered yet. In this study, we investigated stroke specific FC patterns in patients who suffered unilateral hemispheric stroke during a motor execution task. Partial correlation coefficients between multiple electroencephalography (EEG) channels were computed to construct the functional networks for healthy controls and stroke patients. The graph-based analysis was then performed to characterize specific FC patterns in stroke patients. Results suggested that brain networks were characterized in stroke patients by lower global efficiency and clustering coefficient in alpha and beta band, compared to healthy controls. Regionally, stroke patients exhibited weaker local connection in motor area of affected hemisphere during motor execution, which may explain their motor deficits. The findings of our study may offer new insight to study the neural plasticity and brain reorganization after stroke.
机译:脑卒中后幸存者经常患有运动功能障碍,通常与大脑网络的解剖和功能改变有关。以前的基于EEG的脑网络分析主要集中在静止状态和单个方面(全局或区域性)的中风链接的脑网络,尚未发现中风患者在特定运动任务期间的功能连接(FC)模式。在这项研究中,我们调查了在执行运动任务期间遭受单侧半球性卒中的患者的特定卒中FC模式。计算多个脑电图(EEG)通道之间的部分相关系数,以构建健康对照和中风患者的功能网络。然后进行基于图的分析以表征中风患者的特定FC模式。结果表明,与健康对照相比,脑卒中患者的脑网络具有较低的总体效率和α和β谱带的聚类系数。在区域上,中风患者在运动执行期间在受影响的半球的运动区域表现出较弱的局部连接,这可以解释他们的运动缺陷。我们的研究结果可能为研究中风后的神经可塑性和大脑重组提供新的见解。

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