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人类在行走和跑步中对新习得的运动模式的转移有限。

Limited transfer of newly acquired movement patterns across walking and running in humans.

机构信息

Department of Rehabilitation for the Movement Functions, Research Institute, National Rehabilitation Center for Persons with Disabilities, Namiki, Tokorozawa, Saitama, Japan.

出版信息

PLoS One. 2012;7(9):e46349. doi: 10.1371/journal.pone.0046349. Epub 2012 Sep 27.

Abstract

The two major modes of locomotion in humans, walking and running, may be regarded as a function of different speed (walking as slower and running as faster). Recent results using motor learning tasks in humans, as well as more direct evidence from animal models, advocate for independence in the neural control mechanisms underlying different locomotion tasks. In the current study, we investigated the possible independence of the neural mechanisms underlying human walking and running. Subjects were tested on a split-belt treadmill and adapted to walking or running on an asymmetrically driven treadmill surface. Despite the acquisition of asymmetrical movement patterns in the respective modes, the emergence of asymmetrical movement patterns in the subsequent trials was evident only within the same modes (walking after learning to walk and running after learning to run) and only partial in the opposite modes (walking after learning to run and running after learning to walk) (thus transferred only limitedly across the modes). Further, the storage of the acquired movement pattern in each mode was maintained independently of the opposite mode. Combined, these results provide indirect evidence for independence in the neural control mechanisms underlying the two locomotive modes.

摘要

人类的两种主要运动模式,步行和跑步,可以看作是不同速度的一种功能(步行较慢,跑步较快)。最近在人类运动学习任务中以及从动物模型中获得的更直接的证据表明,不同运动任务的神经控制机制是独立的。在本研究中,我们研究了人类步行和跑步的神经机制的可能独立性。研究对象在分带跑步机上进行测试,并适应在不对称驱动跑步机表面上进行步行或跑步。尽管在各自的模式中获得了不对称的运动模式,但在随后的试验中出现的不对称运动模式仅在相同的模式中明显(在学习步行后进行步行,在学习跑步后进行跑步),并且仅在相反的模式中部分明显(在学习跑步后进行步行,在学习步行后进行跑步)(因此仅在模式之间有限地转移)。此外,在每个模式中存储的所获得的运动模式独立于相反的模式。综合这些结果,为两种运动模式的神经控制机制的独立性提供了间接证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8f8/3459930/b8f22964e1db/pone.0046349.g001.jpg

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