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Cerebellar asymmetry and its relation to cerebral asymmetry estimated by intrinsic functional connectivity

机译:通过内在功能连通性估计的小脑不对称及其与脑不对称的关系

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摘要

Asymmetry of the human cerebellum was investigated using intrinsic functional connectivity. Regions of functional asymmetry within the cerebellum were identified during resting-state functional MRI (n = 500 subjects) and replicated in an independent cohort (n = 500 subjects). The most strongly right lateralized cerebellar regions fell within the posterior lobe, including crus I and crus II, in regions estimated to link to the cerebral association cortex. The most strongly left lateralized cerebellar regions were located in lobules VI and VIII in regions linked to distinct cerebral association networks. Comparison of cerebellar asymmetry with independently estimated cerebral asymmetry revealed that the lateralized regions of the cerebellum belong to the same networks that are strongly lateralized in the cerebrum. The degree of functional asymmetry of the cerebellum across individuals was significantly correlated with cerebral asymmetry and varied with handedness. In addition, cerebellar asymmetry estimated at rest predicted cerebral lateralization during an active language task. These results demonstrate that functional lateralization is likely a unitary feature of large-scale cerebrocerebellar networks, consistent with the hypothesis that the cerebellum possesses a roughly homotopic map of the cerebral cortex including the prominent asymmetries of the association cortex.
机译:人类小脑的不对称性使用固有的功能连接进行了调查。小脑内功能不对称区域在静息态功能性MRI期间被鉴定(n = 500名受试者),并在一个独立的队列中被复制(n = 500名受试者)。最强的右侧小脑外侧区域位于后叶内,包括小腿I和小腿II,位于与大脑皮层相关的区域。最强的左侧小脑外侧化区位于小叶VI和VIII中与不同的大脑联想网络相连的区域。小脑不对称性与独立估计的脑不对称性的比较表明,小脑的侧化区域属于在大脑中强烈侧化的相同网络。个体间小脑的功能不对称程度与脑不对称性显着相关,并且随惯用性而异。此外,静息时估计的小脑不对称预示着活跃的语言任务期间大脑偏侧化。这些结果表明功能侧化可能是大规模小脑网络的统一特征,这与小脑具有大脑皮层的大致同位图(包括显着的皮层不对称性)的假设相一致。

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