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首页> 外文期刊>Gait & posture >Phase resetting behavior in human gait is influenced by treadmill walking speed
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Phase resetting behavior in human gait is influenced by treadmill walking speed

机译:跑步机的步行速度会影响人步态的相位重置行为

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摘要

Gait is often modeled as a limit cycle oscillator. When perturbed, this type of system will reset its output in a stereotypical manner, which may be shifted in time with respect to its original trajectory. In contrast to other biological oscillators, relatively little is known regarding the phase resetting properties for human gait. Because humans must often reset their gait in response to perturbation, an improved understanding of this behavior may have implications for reducing the risk of fall. The purpose of this study was to further evaluate phase resetting behaviors in human gait with particular emphasis on (1) variance of the phase resetting response among healthy individuals and (2) the sensitivity of this response to walking speed. Seventeen healthy subjects walked on a treadmill at 2.0 mph, 2.5 mph, and 3.0 mph while their right limb was perturbed randomly every 12-20 strides. Discrete, mechanical perturbations were applied by a rope that was attached to each subject's ankle and actuated by a motorized arm. Perturbations were applied once during a select stride, always at a different point in the swing phase, and the amount of phase shift that occurred on the subsequent stride was recorded. A subset of 8 subjects also walked at their preferred walking speed for 3 additional trials on a separate day in order to provide an estimate of within-subjects variability. The results suggested that phase resetting behavior is relatively consistent among subjects, but that minor variations in phase resetting behavior are attributable to walking at different treadmill speeds. (C) 2015 Elsevier B.V. All rights reserved.
机译:步态通常被建模为极限循环振荡器。受到干扰时,此类系统将以定型方式重置其输出,该输出可能会相对于其原始轨迹在时间上发生偏移。与其他生物振荡器相反,关于人体步态的相位重置属性知之甚少。由于人类通常必须根据干扰来重新设置步态,因此对这种行为的更好理解可能对降低跌倒的风险有影响。这项研究的目的是进一步评估人的步态中的相位重置行为,特别着重于(1)健康个体之间的相位重置响应的方差和(2)这种响应对步行速度的敏感性。 17名健康受试者在跑步机上以2.0 mph,2.5 mph和3.0 mph的速度行走,而他们的右肢每12-20个步幅随机受到一次扰动。离散的机械扰动通过一条绳索施加,该绳索连接到每个受试者的脚踝,并由电动手臂驱动。在选定的步幅中,仅在挥杆阶段的不同点处施加一次扰动,并记录下一个步幅发生的相移量。为了提供受试者内部变异性的估计值,还将8名受试者的子集以他们偏爱的步行速度在另外一天进行另外3次试验。结果表明,相变行为在受试者之间相对一致,但是相变行为的细微变化可归因于以不同跑步机速度行走。 (C)2015 Elsevier B.V.保留所有权利。

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