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DTI Tractography and White Matter Fiber Tract Characteristics in Euthymic Bipolar I Patients and Healthy Control Subjects

机译:正常人正常人和正常人的DTI描记术和白质纤维描记特征

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摘要

With the introduction of diffusion tensor imaging (DTI), structural differences in white matter (WM) architecture between psychiatric populations and healthy controls can be systematically observed and measured. In particular, DTI-tractography can be used to assess WM characteristics over the entire extent of WM tracts and aggregated fiber bundles. Using 64-direction DTI scanning in 27 participants with bipolar disorder (BD) and 26 age-and-gender-matched healthy control subjects, we compared relative length, density, and fractional anisotrophy (FA) of WM tracts involved in emotion regulation or theorized to be important neural components in BD neuropathology. We interactively isolated 22 known white matter tracts using region-of-interest placement (TrackVis software program) and then computed relative tract length, density, and integrity. BD subjects demonstrated significantly shorter WM tracts in the genu, body and splenium of the corpus callosum compared to healthy controls. Additionally, bipolar subjects exhibited reduced fiber density in the genu and body of the corpus callosum, and in the inferior longitudinal fasciculus bilaterally. In the left uncinate fasciculus, however, BD subjects exhibited significantly greater fiber density than healthy controls. There were no significant differences between groups in WM tract FA for those tracts that began and ended in the brain. The significance of differences in tract length and fiber density in BD is discussed.
机译:随着扩散张量成像(DTI)的引入,可以系统地观察和测量精神病人群与健康对照之间白质(WM)结构的结构差异。特别是,DTI牵引成像可用于评估WM道和聚集的纤维束整个范围内的WM特性。在27位双相情感障碍(BD)参与者和26位年龄和性别匹配的健康对照对象中使用64方向DTI扫描,我们比较了涉及情绪调节或理论化的WM道的相对长度,密度和分数各向异性(FA)是BD神经病理学中重要的神经成分。我们使用感兴趣区域放置(TrackVis软件程序)以交互方式隔离了22个已知的白质区域,然后计算了相对区域的长度,密度和完整性。与健康对照组相比,BD受试者表现出call体的属,体和脾中的WM道明显短。另外,双相受试者在call体的属和身体以及双侧下纵筋膜中表现出降低的纤维密度。但是,在左束状筋膜中,BD受试者的纤维密度明显高于健康对照组。对于在大脑中开始和结束的那些道,WM道FA组之间没有显着差异。讨论了BD的长度和纤维密度差异的重要性。

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