首页> 外文期刊>Journal of Applied Biomechanics >Postural Stability When Walking and Exposed to Mediolateral Oscillatory Motion: Effect of Oscillation Waveform
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Postural Stability When Walking and Exposed to Mediolateral Oscillatory Motion: Effect of Oscillation Waveform

机译:行走并暴露于内侧震荡运动时的姿势稳定性:振荡波形的影响

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摘要

Postural stability can be threatened by the low-frequency motions in transport that are usually quantified by their root-mean-square (r.m.s.) acceleration. This study investigated how the stability of walking people depends on the waveform of 1- and 2-Hz mediolateral oscillations of the surface on which they walk. Walking on a treadmill, 20 subjects were perturbed by random oscillations of the treadmill with one-third octave bandwidths: different waveforms with the same r.m.s. acceleration and different waveforms with the same peak acceleration. Stability was measured subjectively and objectively by the velocity of the center of pressure in the mediolateral direction. Subjective and objective measures of walking instability increased with increasing r.m.s. acceleration of oscillations having the same peak acceleration. These same measures of instability were also affected by the peak acceleration when the r.m.s. magnitude of the oscillations was constant, especially with 1-Hz oscillations. It is concluded that r.m.s. measures of acceleration are insufficient to predict the postural stability of walking passengers exposed to mediolateral oscillations and that peaks in the oscillations should also be taken into account.
机译:运输中的低频运动通常会通过其均方根(r.m.s.)加速度来量化,从而威胁到姿势稳定性。这项研究调查了步行者的稳定性如何取决于他们步行表面的1Hz和2Hz的中外侧振动的波形。在跑步机上行走时,跑步机的随机振动以三分之一倍频程带宽干扰了20名受试者:具有相同r.m.s的不同波形。加速度和峰值加速度相同的不同波形。稳定性是通过压力中心在中外侧方向上的速度来主观和客观地衡量的。步行不稳定性的主观和客观指标随着r.m.s的增加而增加。具有相同峰值加速度的振荡的加速度。当r.m.s.振荡幅度是恒定的,尤其是在1 Hz振荡时。结论是加速度的测量不足以预测暴露于中外侧振动的步行乘客的姿势稳定性,还应考虑振动的峰值。

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