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Spatial coherence of oriented white matter microstructure: Applications to white matter regions associated with genetic similarity

机译:面向白质微观结构的空间相干性:与遗传相似性相关的白质区的应用

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We present a method to discover differences between populations with respect to the spatial coherence of their oriented white matter microstructure in arbitrarily shaped white matter regions. This method is applied to diffusion MRI scans of a subset of the Human Connectome Project dataset: 57 pairs of monozygotic and 52 pairs of dizygotic twins. After controlling for morphological similarity between twins, we identify 3.7% of all white matter as being associated with genetic similarity (35.1 k voxels, p 10(-4), false discovery rate 1.5%), 75% of which spatially clusters into twenty-two contiguous white matter regions. Furthermore, we show that the orientation similarity within these regions generalizes to a subset of 47 pairs of non-twin siblings, and show that these siblings are on average as similar as dizygotic twins. The regions are located in deep white matter including the superior longitudinal fasciculus, the optic radiations, the middle cerebellar peduncle, the corticospinal tract, and within the anterior temporal lobe, as well as the cerebellum, brain stem, and amygdalae.
机译:我们提出了一种方法来发现群体与任意形状的白质地区定向白质微观结构的空间相干性的差异。该方法应用于人类连接项目数据集的子集的扩散MRI扫描:57对单义根和52对Dizygotic Twins。在控制双胞胎之间的形态相似之后,我们鉴定所有白金的3.7%与遗传相似性相关(35.1k voxels,P <10(-4),假发现率1.5%),其中空间簇的75%二十二连续白质区。此外,我们表明这些区域内的方向相似度概括为47对非双胞胎兄弟姐妹的子集,并表明这些兄弟姐妹平均与Dizygotic双胞胎相似。该地区位于深白物质中,包括优异的纵向束型坐毛,视光辐射,中部小脑花序梗,皮质脊髓椎间盘和前颞叶内,以及小脑,脑干和杏仁糖。

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