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Genetic contributions to white matter architecture revealed by diffusion tensor imaging in Williams syndrome

机译:威廉姆斯综合征中扩散张量成像揭示白质结构的遗传贡献

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Little is known about genetic regulation of the development of white matter. This knowledge is critical in understanding the pathophysiology of neurodevelopmental syndromes associated with altered cognition as well as in elucidating the genetics of normal human cognition. The hemideletion of ≈25 genes on chromosome 7q11.23 that causes Williams syndrome (WS) includes genes that regulate cytoskeletal dynamics in neurons, especially LIMK1 and CYLN2. and therefore offers the opportunity to investigate the role of these genes in the formation of white matter tracts. We used diffusion tensor imaging to demonstrate alteration in white matter fiber directionality, deviation in posterior fiber tract course, and reduced lateralization of fiber coherence in WS. These abnormalities are consistent with an alteration of the late stages of neuronal migration, define alterations of white matter structures underlying dissociable behavioral phenotypes in WS, and provide human in vivo information about genetic control of white matter tract formation.
机译:关于白质发育的遗传调控知之甚少。该知识对于理解与认知改变有关的神经发育综合征的病理生理以及阐明正常人类认知的遗传学至关重要。导致威廉姆斯综合征(WS)的染色体7q11.23上≈25个基因的半脱细胞包括调节神经元,尤其是LIMK1和CYLN2中细胞骨架动力学的基因。因此,提供了机会来研究这些基因在白质束形成中的作用。我们使用扩散张量成像来证明白质纤维方向性的变化,后纤维束路径的偏差以及WS中纤维相干性的减少。这些异常与神经元迁移后期的改变一致,定义了WS中可分离的行为表型基础的白质结构的改变,并提供了关于白质束形成的遗传控制的人类体内信息。

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