首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >Alteration of Cortical Functional Connectivity as a Result of Traumatic Brain Injury Revealed by Graph Theory, ICA, and sLORETA Analyses of EEG Signals
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Alteration of Cortical Functional Connectivity as a Result of Traumatic Brain Injury Revealed by Graph Theory, ICA, and sLORETA Analyses of EEG Signals

机译:图论,ICA和sLORETA对脑电信号的分析揭示了颅脑外伤导致皮质功能连通性的改变

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In this paper, a novel approach to examine the cortical functional connectivity using multichannel electroencephalographic (EEG) signals is proposed. First we utilized independent component analysis (ICA) to transform multichannel EEG recordings into independent processes and then applied source reconstruction algorithm [i.e., standardize low resolution brain electromagnetic (sLORETA)] to identify the cortical regions of interest (ROIs). Second, we performed a graph theory analysis of the bipartite network composite of ROIs and independent processes to assess the connectivity between ROIs. We applied this proposed algorithm and compared the functional connectivity network properties under resting state condition using 29 student-athletes prior to and shortly after sport-related mild traumatic brain injury (MTBI). The major findings of interest are the following. There was 1) alterations in vertex degree at frontal and occipital regions in subjects suffering from MTBI, $({ p} u0003C; 0.05)$; 2) a significant decrease in the long-distance connectivity and significant increase in the short-distance connectivity as a result of MTBI, $({ p} u0003C; 0.05)$; 3) a departure from small-world network configuration in MTBI subjects. These major findings are discussed in relation to current debates regarding the brain functional connectivity within and between local and distal regions both in normal controls in pathological subjects.
机译:在本文中,提出了一种使用多通道脑电图(EEG)信号检查皮质功能连通性的新方法。首先,我们利用独立成分分析(ICA)将多通道EEG记录转换为独立过程,然后应用源重构算法[即,对低分辨率脑电磁波(sLORETA)进行标准化]来识别感兴趣的皮质区域(ROI)。其次,我们对ROI的双向网络复合结构和独立过程进行了图论分析,以评估ROI之间的连通性。我们应用了该算法并比较了运动相关性轻度颅脑损伤(MTBI)前后29名学生运动员在静止状态下的功能连接网络属性。感兴趣的主要发现如下。 1)患有MTBI的受试者额叶和枕骨区的顶点度有变化,$({p} u0003C; 0.05)$; 2)由于MTBI,$({p} u0003C; 0.05)$导致长途连接的显着减少和短途连接的显着增加; 3)在MTBI主题中偏离小世界网络配置。这些主要发现与当前有关病理受试者正常对照中局部和远端区域内和之间的大脑功能连通性的讨论有关。

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