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High-angular resolution diffusion imaging tractography of cerebellar pathways from newborns to young adults

机译:从新生儿到年轻人的小脑通路的高角度分辨率弥散成像术

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Abstract Introduction Many neurologic and psychiatric disorders are thought to be due to, or result in, developmental errors in neuronal cerebellar connectivity. In this connectivity analysis, we studied the developmental time-course of cerebellar peduncle pathways in pediatric and young adult subjects. Methods A cohort of 80 subjects, newborns to young adults, was studied on a 3T MR system with 30 diffusion-weighted measurements with high-angular resolution diffusion imaging (HARDI) tractography. Results Qualitative and quantitative results were analyzed for age-based variation. In subjects of all ages, the superior cerebellar peduncle pathway (SCP) and two distinct subpathways of the middle cerebellar peduncle (MCP), as described in previous ex vivo studies, were identified in vivo with this technique: pathways between the rostral pons and inferior-lateral cerebellum (MCP cog ), associated predominantly with higher cognitive function, and pathways between the caudal pons and superior-medial cerebellum (MCP mot ), associated predominantly with motor function. Discussion Our findings showed that the inferior cerebellar peduncle pathway (ICP), involved primarily in proprioception and balance appears to have a later onset followed by more rapid development than that exhibited in other tracts. We hope that this study may provide an initial point of reference for future studies of normal and pathologic development of cerebellar connectivity.
机译:摘要简介许多神经系统疾病和精神疾病被认为是由于或导致了神经元小脑连接的发育错误。在此连通性分析中,我们研究了小儿和年轻成人受试者中小脑柄的发育时程。方法在3T MR系统上对80名受试者(新生儿至青壮年)进行了研究,并采用高角度分辨率扩散成像(HARDI)超声成像技术进行了30次扩散加权测量。结果分析了基于年龄的定性和定量结果。如先前的离体研究所述,在所有年龄段的受试者中,均使用该技术在体内鉴定了小脑上皮小径途径(SCP)和中小脑干小枝途径(MCP)的两个截然不同的亚途径:鼻翼桥与下半桥之间的通路侧脑小脑(MCP cog)主要与较高的认知功能相关,尾脑桥与上中小脑(MCP mot)之间的路径主要与运动功能相关。讨论我们的研究结果表明,主要参与本体感受和平衡的下小脑梗路径(ICP)似乎发病较晚,随后发展较其他道更快。我们希望这项研究可以为以后的小脑连接正常和病理发展研究提供参考。

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