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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Novel diffusion tensor imaging methodology to detect and quantify injured regions and affected brain pathways in traumatic brain injury
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Novel diffusion tensor imaging methodology to detect and quantify injured regions and affected brain pathways in traumatic brain injury

机译:新型扩散张量成像方法,用于检测和量化颅脑损伤中的受损区域和受影响的脑通路

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摘要

Purpose: To develop and apply diffusion tensor imaging (DTI)-based normalization methodology for the detection and quantification of sites of traumatic brain injury (TBI) and the impact of injury along specific brain pathways in (a) individual TBI subjects and (b) a TBI group. Materials and Methods: Normalized DTI tractography was conducted in the native space of 12 TBI and 10 age-matched control subjects using the same number of seeds in each subject, distributed at anatomically equivalent locations. Whole-brain tracts from the control group were mapped onto the head of each TBI subject. Differences in the fractional anisotropy (FA) maps between each TBI subject and the control group were computed in a common space using a t test, transformed back to the individual TBI subject's head space, and thresholded to form regions of interest (ROIs) that were used to sort tracts from the control group and the individual TBI subject. Tract counts for a given ROI in each TBI subject were compared to group mean for the same ROI to quantify the impact of injury along affected pathways. The same procedure was used to compare the TBI group to the control group in a common space. Results: Sites of injury within individual TBI subjects and affected pathways included hippocampal/fomix, inferior fronto-occipital, inferior longitudinal fasciculus, corpus callosum (genu and splenium), cortico-spinal tracts and the uncinate fasciculus. Most of these regions were also detected in the group study. Conclusions: The DTI normalization methodology presented here enables automatic delineation of ROIs within the heads of individual subjects (or in a group). These ROIs not only localize and quantify the extent of injury, but also quantify the impact of injury on affected pathways in an individual or in a group of TBI subjects.
机译:目的:开发和应用基于弥散张量成像(DTI)的归一化方法,以检测和量化(a)个体TBI受试者和(b)沿特定脑通路的损伤对脑部损伤的影响一个TBI小组。材料和方法:在12名TBI和10名年龄匹配的对照受试者的自然空间中进行了标准化DTI束层照相术,每个受试者中使用相同数量的种子,并分布在解剖学上相同的位置。将对照组的全脑束映射到每个TBI受试者的头部。每个TBI受试者和对照组之间的分数各向异性(FA)图的差异是在测试时在一个公共空间中计算出来的,然后转换回单个TBI受试者的顶部空间,并按阈值形成所使用的感兴趣区域(ROI)从对照组和个体TBI受试者中分类。将每个TBI受试者中给定ROI的行数与相同ROI的组平均值进行比较,以量化沿受影响路径的伤害影响。在相同的空间中,使用相同的程序将TBI组与对照组进行比较。结果:单个TBI受试者的损伤部位和受影响的途径包括海马/ fomix,额枕下,纵筋膜下、,体(膝和脾),皮质-脊髓束和束状筋膜。在小组研究中也检测到了大多数这些区域。结论:此处介绍的DTI标准化方法可以自动描绘单个受试者(或一组)的头部内的ROI。这些ROI不仅可以定位和量化损伤程度,而且可以量化损伤对个体或一组TBI受试者中受影响途径的影响。

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