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Motion controlled gait enhancing mobile shoe for rehabilitation

机译:运动控制步态增强了用于康复的移动鞋

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Walking on a split-belt treadmill, which has two belts that can be run at different speeds, has been shown to improve walking patterns post-stroke. However, these improvements are only temporarily retained once individuals transition to walking over ground. We hypothesize that longer-lasting effects would be observed if the training occurred during natural walking over ground, as opposed to on a treadmill. In order to study such long-term effects, we have developed a mobile and portable device which can simulate the same gait altering movements experienced on a split-belt treadmill. The new motion controlled gait enhancing mobile shoe improves upon the previous version's drawbacks. This version of the GEMS has motion that is continuous, smooth, and regulated with on-board electronics. A vital component of this new design is the Archimedean spiral wheel shape that redirects the wearer's downward force into a horizontal backward motion. The design is passive and does not utilize any motors. Its motion is regulated only by a small magnetic particle brake. Further experimentation is needed to evaluate the long-term after-effects.
机译:在具有两条可以不同速度运行的皮带的皮带式跑步机上行走,已被证明可以改善中风后的行走方式。但是,这些改进只有在个人过渡到地面上时才暂时保留。我们假设,如果训练发生在地面自然行走而不是跑步机上,则可以观察到更持久的效果。为了研究这种长期影响,我们开发了一种可移动的便携式设备,该设备可以模拟改变皮带式跑步机上相同步态的运动。新的运动控制步态增强型移动鞋改善了先前版本的缺点。此版本的GEMS具有连续,平稳的运动,并通过车载电子设备进行调节。这种新设计的重要组成部分是Archimedean螺旋轮形状,可将佩戴者的向下力重定向为水平向后运动。该设计是无源的,不使用任何电动机。它的运动仅由小型磁粉制动器控制。需要进一步的实验来评估长期的后遗症。

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