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初级运动皮层在人类手部/手指灵活性发展中的重要性。

Importance of the Primary Motor Cortex in Development of Human Hand/Finger Dexterity.

作者信息

Naito Eiichi, Morita Tomoyo, Asada Minoru

机构信息

Center for Information and Neural Networks (CiNet), National Institute of Information and Communications Technology (NICT), Suita, Osaka 565-0871, Japan.

出版信息

Cereb Cortex Commun. 2020 Dec 2;1(1):tgaa085. doi: 10.1093/texcom/tgaa085. eCollection 2020.

Abstract

Hand/finger dexterity is well-developed in humans, and the primary motor cortex (M1) is believed to play a particularly important role in it. Here, we show that efficient recruitment of the contralateral M1 and neuronal inhibition of the ipsilateral M1 identified by simple hand motor and proprioceptive tasks are related to hand/finger dexterity and its ontogenetic development. We recruited healthy, right-handed children ( = 21, aged 8-11 years) and adults ( = 23, aged 20-26 years) and measured their brain activity using functional magnetic resonance imaging during active and passive right-hand extension-flexion tasks. We calculated individual active control-related activity (active-passive) to evaluate efficient brain activity recruitment and individual task-related deactivation (neuronal inhibition) during both tasks. Outside the scanner, participants performed 2 right-hand dexterous motor tasks, and we calculated the hand/finger dexterity index (HDI) based on their individual performance. Participants with a higher HDI exhibited less active control-related activity in the contralateral M1 defined by the active and passive tasks, independent of age. Only children with a higher HDI exhibited greater ipsilateral M1 deactivation identified by these tasks. The results imply that hand/finger dexterity can be predicted by recruitment and inhibition styles of the M1 during simple hand sensory-motor tasks.

摘要

人类的手部/手指灵活性发育良好,初级运动皮层(M1)被认为在其中发挥着特别重要的作用。在此,我们表明,通过简单的手部运动和本体感觉任务确定的对侧M1的有效募集以及同侧M1的神经元抑制与手部/手指灵活性及其个体发育有关。我们招募了健康的右利手儿童(n = 21,年龄8 - 11岁)和成年人(n = 23,年龄20 - 26岁),并在右手主动和被动屈伸任务期间使用功能磁共振成像测量他们的大脑活动。我们计算个体的主动控制相关活动(主动 - 被动)以评估有效脑活动募集以及两项任务期间的个体任务相关失活(神经元抑制)。在扫描仪外,参与者执行两项右手灵巧运动任务,我们根据他们的个体表现计算手部/手指灵活性指数(HDI)。HDI较高的参与者在由主动和被动任务定义的对侧M1中表现出较少的主动控制相关活动,与年龄无关。只有HDI较高的儿童在这些任务中表现出更大的同侧M1失活。结果表明,在简单的手部感觉运动任务期间,手部/手指灵活性可以通过M1的募集和抑制方式来预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ba0/8152843/e2056759f6d4/tgaa085f1.jpg

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