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Dynamic stability and stepping strategies of young healthy adults walking on an oscillating treadmill

机译:在振荡跑步机上行走的年轻健康成年人的动态稳定性与步进策略

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摘要

Understanding how people modify their stepping to maintain gait stability may provide information on fall risk and help to understand strategies used to reduce loss of balance. The purpose of this study was to identify the stepping strategies healthy young individuals select to maintain balance while walking on a destabilizing surface in various directions. A treadmill mounted on top of a 6 degree-of-freedom motion base was used to generate support surface oscillations in different degrees of freedom and amplitudes. Fifteen healthy young adults (21.3 ± 1.4 years) walked at self-selected speeds while continuous sinusoidal oscillations were imposed to the support surface in a one degree of freedom: rotation or translation in the mediolateral (ML) direction and rotation or translation in the anteroposterior (AP) direction, with each condition repeated at three different amplitudes. We compared step width, length, and frequency and the mean and variability of margin of stability (MoS) during each experimental walking condition with a control condition, in which the support surface was stationary. Subjects chose a common strategy of increasing step width (p < 0.001) and decreasing step length (p = 0.008) while increasing mediolateral MoS (p < 0.001), particularly during oscillations that challenged frontal plane control, with rotations of the walking surface producing the greatest changes to stepping.
机译:了解人们如何修改他们的踩踏以维持步态稳定性可以提供有关秋季风险的信息,并有助于了解用于减少平衡损失的策略。本研究的目的是识别健康年轻人的步进策略,选择在各种方向上行走稳定的表面时保持平衡。安装在6个自由度运动基座顶部的跑步机用于在不同程度的自由度和幅度产生支持表面振荡。十五个健康的年轻人(21.3±1.4岁)以自选择的速度走动,而在一定程度的自由度中施加连续的正弦振荡,在一种自由度中施加到支撑表面上:在Mediolateral(ml)方向和旋转或翻译中的旋转或翻译(AP)方向,每个条件以三种不同的幅度重复。在每个实验步行条件期间,在每个实验步行条件下比较步进宽度,长度和频率以及稳定性裕度的平均值和变化,其中支撑表面是静止的。受试者选择了步进宽度(P <0.001)的常见策略并降低了步长(P = 0.008),同时增加了MICOLATELAL MOS(P <0.001),特别是在攻击前平面控制的振荡期间,行走表面的旋转产生踩踏的最大变化。

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