Terrier Philippe, Reynard Fabienne
Institute for Research in Rehabilitation, Sion, Switzerland, and the Clinique romande de réadaptation SUVACare, Sion, Switzerland.
J Appl Biomech. 2014 Apr;30(2):305-9. doi: 10.1123/jab.2013-0142. Epub 2013 Sep 13.
Local dynamic stability (stability) quantifies how a system responds to small perturbations. Several experimental and clinical findings have highlighted the association between gait stability and fall risk. Walking without shoes is known to slightly modify gait parameters. Barefoot walking may cause unusual sensory feedback to individuals accustomed to shod walking, and this may affect stability. The objective was therefore to compare the stability of shod and barefoot walking in healthy individuals and to analyze the intrasession repeatability. Forty participants traversed a 70 m indoor corridor wearing normal shoes in one trial and walking barefoot in a second trial. Trunk accelerations were recorded with a 3D-accelerometer attached to the lower back. The stability was computed using the finite-time maximal Lyapunov exponent method. Absolute agreement between the forward and backward paths was estimated with the intraclass correlation coefficient (ICC). Barefoot walking did not significantly modify the stability as compared with shod walking (average standardized effect size: +0.11). The intrasession repeatability was high (ICC: 0.73-0.81) and slightly higher in barefoot walking condition (ICC: 0.81-0.87). Therefore, it seems that barefoot walking can be used to evaluate stability without introducing a bias as compared with shod walking, and with a sufficient reliability.
局部动态稳定性(稳定性)量化了系统对微小扰动的响应方式。多项实验和临床研究结果突出了步态稳定性与跌倒风险之间的关联。众所周知,不穿鞋行走会轻微改变步态参数。赤脚行走可能会给习惯穿鞋行走的人带来异常的感觉反馈,进而可能影响稳定性。因此,本研究旨在比较健康个体穿鞋和赤脚行走时的稳定性,并分析单次测试中的重复性。40名参与者在一次测试中穿着普通鞋子走过一条70米长的室内走廊,在另一次测试中则赤脚行走。使用附着在下背部的三维加速度计记录躯干加速度。稳定性采用有限时间最大Lyapunov指数法计算。使用组内相关系数(ICC)估计前后路径之间的绝对一致性。与穿鞋行走相比,赤脚行走并未显著改变稳定性(平均标准化效应量:+0.11)。单次测试的重复性较高(ICC:0.73 - 0.81),且在赤脚行走条件下略高(ICC:0.81 - 0.87)。因此,与穿鞋行走相比,赤脚行走似乎可用于评估稳定性,且不会引入偏差,同时具有足够的可靠性。