传统行走和使用助行器行走的运动适应性不同。

IF 1.7 4区 医学 Q4 NEUROSCIENCES
Experimental Brain Research Pub Date : 2024-08-01 Epub Date: 2024-06-10 DOI:10.1007/s00221-024-06863-2
Hiroki Obata, Tetsuya Ogawa, Naotsugu Kaneko, Keiichi Ishikawa, Kimitaka Nakazawa
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引用次数: 0

摘要

滚动助行器是体能较差或有平衡障碍的人常用的行走辅助工具。毫无疑问,滚动助行器在辅助运动方面非常有用。另一方面,使用滚动助行器行走(WW)是否能有效维持或恢复在传统行走(CW)中被调用的神经系统,这一点值得商榷。这是因为这些运动形式的神经控制异同仍然未知。本研究的目的是从分带适应范例的角度比较 WW 和 CW 的神经控制,揭示 WW 和 CW 的适应如何相互影响。研究测量了10名健康受试者在分带跑步机上行走时和行走后地面反作用力(制动力)的前部分量,并计算了左右两侧制动力峰值的差异作为分带适应的指数(不对称程度)。结果表明:(1)与CW相比,WW能使受试者在分带条件开始后立即做出反应;(2)在一种步态模式(即CW或WW)下分带适应所获得的不对称运动模式较难转移到另一种步态模式;(3)在CW下分带适应所获得的不对称运动模式不会被随后在WW下的执行完全冲淡,反之亦然。这些结果表明了WW的独特控制以及WW和CW之间神经控制的特殊性;从神经控制的角度来看,使用步行器作为CW的训练并不一定合适。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Distinct locomotor adaptation between conventional walking and walking with a walker.

Distinct locomotor adaptation between conventional walking and walking with a walker.

Rolling walkers are common walking aids for individuals with poor physical fitness or balance impairments. There is no doubt that rolling walkers are useful in assisting locomotion. On the other hand, it is arguable that walking with rolling walkers (WW) is effective for maintaining or restoring the nervous systems that are recruited during conventional walking (CW). This is because the differences and similarities of the neural control of these locomotion forms remain unknown. The purpose of the present study was to compare the neural control of WW and CW from the perspective of a split-belt adaptation paradigm and reveal how the adaptations that take place in WW and CW would affect each other. The anterior component of the ground reaction (braking) forces was measured during and after walking on a split-belt treadmill by 10 healthy subjects, and differences in the peak braking forces between the left and right sides were calculated as the index of the split-belt adaptation (the degree of asymmetry). The results demonstrated that (1) WW enabled subjects to respond to the split-belt condition immediately after its start as compared to CW; (2) the asymmetry movement pattern acquired by the split-belt adaptation in one gait mode (i.e., CW or WW) was less transferable to the other gait mode; (3) the asymmetry movement pattern acquired by the split-belt adaptation in CW was not completely washed out by subsequent execution in WW and vice versa. The results suggest unique control of WW and the specificity of neural control between WW and CW; use of the walkers is not necessarily appropriate as training for CW from the perspective of neural control.

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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
228
审稿时长
1 months
期刊介绍: Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.
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