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Step length and width variability while walking on a motion simulator mounted treadmill

机译:在装有运动模拟器的跑步机上行走时步长和宽度变化

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While devices which allow scientists to perturb normal walking are becoming increasingly common, postural adaptations to these perturbations have not been fully quantified. One way to quantify postural responses to perturbations are through the assessment of variability of step length and width. In the present study we determined variability of both step length and width while subjects walked under perturbations of varying amplitude in roll, pitch, yaw, anteroposterior, lateral, and combined roll, pitch, yaw directions. Step kinematics were quantified using motion analysis. The majority of changes in step length variability occurred in Pitch (p<;0.01), mediolateral (p<;0.05) and anteroposterior (p<;0.01) directions. Changes in step width variability were most apparent in combined Roll-Pitch-Yaw (p<;0.01) as well as Roll (p<;0.05), and Yaw (p<;0.05) directions. These data demonstrate that sinusoidal perturbations while walking on a treadmill are sufficient to disrupt normal postural control. These conditions therefore may be useful in constructing rehabilitation programs to improve dynamic balance.
机译:尽管允许科学家扰动正常行走的装置变得越来越普遍,但对这些扰动的姿势适应性尚未完全量化。量化姿势对扰动的反应的一种方法是通过评估步长和步长的可变性。在本研究中,我们确定了受试者在侧倾,俯仰,偏航,前后,横向以及侧倾,俯仰,偏航组合方向变化幅度较大的扰动下行走时步长和宽度的变异性。使用运动分析来定量步进运动学。步长变异性的大部分变化发生在俯仰(p <; 0.01),中外侧(p <; 0.05)和前后(p <; 0.01)方向。在组合的Roll-Pitch-Yaw(p <; 0.01)以及Roll(p <; 0.05)和Yaw(p <; 0.05)方向上,步幅变异性的变化最为明显。这些数据表明,在跑步机上行走时的正弦曲线扰动足以破坏正常的姿势控制。因此,这些条件可能有助于构建康复计划以改善动态平衡。

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