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基于皮质脊髓功能磁共振成像的计算模型揭示了人类中存在不对称组织的运动皮质脊髓网络。

A computational model based on corticospinal functional MRI revealed asymmetrically organized motor corticospinal networks in humans.

机构信息

Department of Advanced Neuroimaging, Integrative Brain Imaging Center, National Center of Neurology and Psychiatry, Tokyo, Japan.

Department of Orthopaedic Surgery, Gunma University Graduate School of Medicine, Maebashi, Gunma, Japan.

出版信息

Commun Biol. 2022 Jul 5;5(1):664. doi: 10.1038/s42003-022-03615-2.

Abstract

Evolution of the direct, monosynaptic connection from the primary motor cortex to the spinal cord parallels acquisition of hand dexterity and lateralization of hand preference. In non-human mammals, the indirect, multi-synaptic connections between the bilateral primary motor cortices and the spinal cord also participates in controlling dexterous hand movement. However, it remains unknown how the direct and indirect corticospinal pathways work in concert to control unilateral hand movement with lateralized preference in humans. Here we demonstrated the asymmetric functional organization of the two corticospinal networks, by combining network modelling and simultaneous functional magnetic resonance imaging techniques of the brain and the spinal cord. Moreover, we also found that the degree of the involvement of the two corticospinal networks paralleled lateralization of hand preference. The present results pointed to the functionally lateralized motor nervous system that underlies the behavioral asymmetry of handedness in humans.

摘要

从初级运动皮层到脊髓的直接单突触连接的演变与手灵巧性的获得和手偏好的偏侧化相平行。在非人类哺乳动物中,双侧初级运动皮层和脊髓之间的间接多突触连接也参与控制灵巧的手部运动。然而,在人类中,直接和间接皮质脊髓通路如何协同工作以控制单侧手部运动和偏侧化偏好尚不清楚。在这里,我们通过结合网络建模和大脑和脊髓的同时功能磁共振成像技术,展示了两个皮质脊髓网络的不对称功能组织。此外,我们还发现,两个皮质脊髓网络的参与程度与手偏好的偏侧化相平行。目前的结果表明,存在一个功能偏侧化的运动神经系统,它是人类用手习惯行为不对称的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f10d/9256686/49095b15ac8e/42003_2022_3615_Fig1_HTML.jpg

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