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Distinct Motor Strategies Underlying Split-Belt Adaptation in Human Walking and Running

机译:人体步行和跑步中基于皮带分割的独特运动策略

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摘要

The aim of the present study was to elucidate the adaptive and de-adaptive nature of human running on a split-belt treadmill. The degree of adaptation and de-adaptation was compared with those in walking by calculating the antero-posterior component of the ground reaction force (GRF). Adaptation to walking and running on a split-belt resulted in a prominent asymmetry in the movement pattern upon return to the normal belt condition, while the two components of the GRF showed different behaviors depending on the gaits. The anterior braking component showed prominent adaptive and de-adaptive behaviors in both gaits. The posterior propulsive component, on the other hand, exhibited such behavior only in running, while that in walking showed only short-term aftereffect (lasting less than 10 seconds) accompanied by largely reactive responses. These results demonstrate a possible difference in motor strategies (that is, the use of reactive feedback and adaptive feedforward control) by the central nervous system (CNS) for split-belt locomotor adaptation between walking and running. The present results provide basic knowledge on neural control of human walking and running as well as possible strategies for gait training in athletic and rehabilitation scenes.
机译:本研究的目的是阐明在皮带式跑步机上跑步的人的适应性和去适应性。通过计算地面反作用力(GRF)的前后分量,比较了适应和不适应的程度与步行时的适应和不适应程度。恢复到正常的腰带状态后,适应皮带分裂走路和跑步会导致运动模式明显不对称,而GRF的两个组件则根据步态表现出不同的行为。在两个步态中,前制动部件均表现出突出的适应性和去适应性行为。另一方面,后推成分仅在跑步中表现出这种行为,而步行时仅表现出短期后效(持续时间少于10秒),并伴有较大的反应性反应。这些结果表明,中枢神经系统(CNS)在步行和跑步之间对皮带运动的适应中,在运动策略(即使用反应性反馈和自适应前馈控制)方面可能存在差异。目前的结果提供了关于人类步行和跑步的神经控制的基础知识,以及在运动和康复场景中进行步态训练的可能策略。

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