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A shoe sole-based apparatus and method for randomly perturbing the stance phase of gait: Test-retest reliability in young adults

机译:基于鞋底的设备和方法,用于随机扰动步态的姿势阶段:年轻人的重测信度

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摘要

Walking on an irregular surface is associated with an elevated risk for a fall at any age. Yet, relatively little is known about how a human responds to an unexpected underfoot perturbation during gait. This is partly due to the difficulty of generating an intermittent but repeatable, unexpected, underfoot perturbation whose size and location are precisely known. So we developed a shoe sole-embedded apparatus for randomly perturbing the stance phase of gait. Medial and lateral flaps were concealed in the soles of pairs of sandals, along with their actuators. Either flap could be deployed within 400. ms in the parasagittal plane under a swing foot; this altered the resulting sagittal and frontal plane orientations of the foot during the next stance phase, whereafter the flap was retracted following toe-off for the rest of that gait trial. We tested six healthy young subjects by randomly presenting a single medial or lateral perturbation in 12 of 30 gait trials. Traditional step kinematic measures were used to evaluate the test-retest reliability of the response to the stimulus at two different walking speeds in 60 randomized trials conducted 1 week apart. The method was effective in systematically inducing an alteration in gait, reproducible across visits, as evidenced by acceptable intraclass correlation coefficients for step width, time and length. We conclude that the apparatus and method has potential for measuring the ability of humans to reject one or more unexpected underfoot perturbations during gait.
机译:在不规则的表面上行走会增加任何年龄段儿童跌倒的风险。然而,关于人类在步态中如何应对意外的脚底微扰的知识知之甚少。这部分是由于难以产生间歇的但可重复的,出乎意料的脚下摄动,其大小和位置是已知的。因此,我们开发了一种鞋底嵌入式设备,用于随机扰动步态的站立阶段。内侧和外侧皮瓣及其致动器均隐藏在凉鞋对的鞋底中。任一襟翼均可在挥脚下的矢状旁平面内400. ms内展开;在下一个姿势阶段,这改变了脚的矢状和额面取向,此后在步态试验的其余部分中,脚趾放开后,皮瓣缩回。我们通过在30个步态试验中的12个中随机表现出单个的内侧或外侧扰动,对6名健康的年轻受试者进行了测试。在间隔1周进行的60项随机试验中,传统的运动学测量方法用于评估两种不同步行速度下对刺激反应的重测信度。该方法有效地系统地诱导了步态变化,可在每次就诊中再现,这一点已被可接受的步长,时间和长度的组内相关系数所证明。我们得出的结论是,该装置和方法具有测量人类在步态中拒绝一个或多个意外的脚下扰动的能力的潜力。

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