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The effect of external lateral stabilization on the use of foot placement to control mediolateral stability in walking and running

机译:外侧稳定装置对脚的放置以控制步行和跑步中外侧稳定性的影响

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摘要

It is still unclear how humans control mediolateral (ML) stability in walking and even more so for running. Here, foot placement strategy as a main mechanism to control ML stability was compared between walking and running. Moreover, to verify the role of foot placement as a means to control ML stability in both modes of locomotion, this study investigated the effect of external lateral stabilization on foot placement control. Ten young adults participated in this study. Kinematic data of the trunk (T6) and feet were recorded during walking and running on a treadmill in normal and stabilized conditions. Correlation between ML trunk CoM state and subsequent ML foot placement, step width, and step width variability were assessed. Paired t-tests (either SPM1d or normal) were used to compare aforementioned parameters between normal walking and running. Two-way repeated measures ANOVAs (either SPM1d or normal) were used to test for effects of walking vs. running and of normal vs. stabilized condition. We found a stronger correlation between ML trunk CoM state and ML foot placement and significantly higher step width variability in walking than in running. The correlation between ML trunk CoM state and ML foot placement, step width, and step width variability were significantly decreased by external lateral stabilization in walking and running, and this reduction was stronger in walking than in running. We conclude that ML foot placement is coordinated to ML trunk CoM state to stabilize both walking and running and this coordination is stronger in walking than in running.
机译:尚不清楚人类如何控制步行时的中外侧(ML)稳定性,甚至在跑步中也是如此。在此,比较了步行和跑步之间脚部放置策略作为控制ML稳定性的主要机制。此外,为验证脚的放置在两种运动方式中作为控制ML稳定性的一种手段的作用,本研究调查了外侧横向稳定对脚放置控制的影响。十个年轻人参加了这项研究。在正常和稳定的条件下在跑步机上行走和跑步时,记录了躯干(T6)和脚的运动数据。评估了ML躯干CoM状态与随后的ML脚放置,步幅和步幅变异性之间的相关性。使用成对的t检验(SPM1d或正常)比较正常步行和跑步之间的上述参数。使用双向重复测量方差分析(SPM1d或正常)来测试步行与跑步以及正常与稳定状态的影响。我们发现ML躯干CoM状态与ML足部位置之间的相关性更强,步行中步幅变异性明显高于跑步中。在步行和跑步中,外部横向稳定作用显着降低了ML躯干CoM状态与ML脚的放置,步幅和步幅变异性之间的相关性,并且这种减小的强度要大于跑步。我们得出的结论是,ML脚的放置与ML躯干的CoM状态协调,以稳定步行和跑步,并且这种协调在步行中比在跑步中更强。

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