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Measuring inter-hemispheric integration in bipolar affective disorder using brain network analyses and HARDI

机译:使用脑网络分析和HARDI测量双相情感障碍的半球间整合

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Bipolar disorder is characterized by extreme mood swings, including both manic and depressive episodes commonly accompanied by psychosis. Many imaging studies have investigated white matter changes in bipolar illness, and the results have suggested abnormal intra- and inter-hemispheric white matter structures, particularly in the fronto-limbic and callosal systems. However, some inconsistency remains in the literature, and no study to-date has utilized brain network analysis using graph theory. Here, we acquired 64-direction diffusion weighted imaging (DWI) on 25 euthymic bipolar I subjects and 25 gender/age matched healthy subjects. White matter integrity measures were computed and compared in 50 white matter ROIs. The results indicated impaired integrity in the corpus callosum. Guided by this, we constructed whole brain structural connectivity networks using graph theory. We devised brain network metrics (inter-hemispheric path length and efficiency) to further probe inter-hemispheric integration, and demonstrated relatively preserved intra-hemispheric but significantly impaired inter-hemispheric integration in our bipolar subjects.
机译:躁郁症的特征在于极端的情绪波动,包括​​躁狂和抑郁发作,通常伴有精神病。许多影像学研究调查了躁郁症中白质的变化,结果表明半球内和半球间白质结构异常,特别是在额-边缘和bic体系统中。但是,文献中仍然存在一些不一致之处,并且迄今为止,尚无研究利用图论进行脑网络分析。在这里,我们获得了25个正常人双相I受试者和25个性别/年龄相匹配的健康受试者的64方向扩散加权成像(DWI)。计算了白质完整性指标,并在50个白质ROI中进行了比较。结果表明call体完整性受损。在此指导下,我们使用图论构建了全脑结构连接网络。我们设计了大脑网络指标(半球之间的路径长度和效率)以进一步探究半球之间的整合,并在我们的双相受试者中证明了相对保留的半球内部但明显损害了半球之间的整合。

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