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Disrupted Functional Brain Connectivity in Partial Epilepsy: A Resting-State fMRI Study

机译:部分性癫痫中功能性大脑连接中断:静态fMRI研究

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摘要

Examining the spontaneous activity to understand the neural mechanism of brain disorder is a focus in recent resting-state fMRI. In the current study, to investigate the alteration of brain functional connectivity in partial epilepsy in a systematical way, two levels of analyses (functional connectivity analysis within resting state networks (RSNs) and functional network connectivity (FNC) analysis) were carried out on resting-state fMRI data acquired from the 30 participants including 14 healthy controls(HC) and 16 partial epilepsy patients. According to the etiology, all patients are subdivided into temporal lobe epilepsy group (TLE, included 7 patients) and mixed partial epilepsy group (MPE, 9 patients). Using group independent component analysis, eight RSNs were identified, and selected to evaluate functional connectivity and FNC between groups. Compared with the controls, decreased functional connectivity within all RSNs was found in both TLE and MPE. However, dissociating patterns were observed within the 8 RSNs between two patient groups, i.e, compared with TLE, we found decreased functional connectivity in 5 RSNs increased functional connectivity in 1 RSN, and no difference in the other 2 RSNs in MPE. Furthermore, the hierarchical disconnections of FNC was found in two patient groups, in which the intra-system connections were preserved for all three subsystems while the lost connections were confined to intersystem connections in patients with partial epilepsy. These findings may suggest that decreased resting state functional connectivity and disconnection of FNC are two remarkable characteristics of partial epilepsy. The selective impairment of FNC implicated that it is unsuitable to understand the partial epilepsy only from global or local perspective. We presumed that studying epilepsy in the multi-perspective based on RSNs may be a valuable means to assess the functional changes corresponding to specific RSN and may contribute to the understanding of the neuro-pathophysiological mechanism of epilepsy.
机译:检查自发活动以了解脑部疾病的神经机制是最近的静止状态功能磁共振成像的重点。在当前的研究中,为了系统地研究部分癫痫中脑功能连通性的变化,在静息状态下进行了两个层次的分析(静息状态网络内的功能连通性分析(RSN)和功能网络连通性(FNC)分析) 30位参与者(包括14位健康对照(HC)和16位部分性癫痫患者)获得的半定量功能磁共振成像数据。根据病因,将所有患者分为颞叶癫痫组(TLE,包括7例患者)和混合性部分癫痫组(MPE,9例)。使用独立于组的组件分析,确定了八个RSN,并选择它们来评估组之间的功能连接性和FNC。与对照相比,TLE和MPE均发现所有RSN中的功能连接性降低。但是,在两个患者组之间的8个RSN中观察到分离模式,即,与TLE相比,我们发现5个RSN中的功能连通性降低,而1个RSN中的功能连通性增加,而在MPE中的其他2个RSN中没有差异。此外,在两个患者组中发现了FNC的分层断开连接,其中保留了所有三个子系统的系统内连接,而对于部分癫痫患者,丢失的连接仅限于系统间连接。这些发现可能表明静息状态功能连接性的下降和FNC的断开是部分癫痫的两个显着特征。 FNC的选择性损伤意味着仅从整体或局部角度了解部分癫痫病是不合适的。我们认为,基于RSN在多角度研究癫痫病可能是评估与特定RSN相对应的功能变化的有价值的手段,并且可能有助于了解癫痫的神经病理生理机制。

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