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Force Adaptation in Human Walking with Symmetrically Applied Downward Forces on the Pelvis

机译:在骨盆上使用对称施加的向下力量的人类行走

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The application of external constraints and/or applied forces during movement can lead to reactive as well as adaptive changes in human motion. Previous researches in the literature have usually focused on adaptation in human kinematics when external forces were applied using exoskeletons during the swing phase of gait. This work aims to study adaptation in human walking when externally applied forces are present on the pelvis both during the swing and stance phases of the gait. A novel tethered pelvic assist device (TPAD) was used to passively apply downward forces on the human pelvis while walking. During the experiment, healthy subjects walked on a treadmill at a constant speed while their kinematics and foot pressure data were recorded. Data analysis revealed that the healthy subjects exhibited both reactive as well as adaptive changes in their gait parameters. The immediate response of the subjects was to increase their hip flexion to clear their foot off the ground as they were unable to lift their pelvis to their usual height during normal motion. Seven out of eight subjects in the study resisted the downward forces to move their pelvis up. Eventually, they reached a level of downward force that they could sustain over the training. This adaptation to the downward force was reflected in the heel peak pressure values during the cycles of the gait. On removing the tethers, aftereffects in heel peak pressure during the gait cycles were observed.
机译:在运动期间的外部约束和/或施加的应用可能导致有反应性以及人类运动的适应性变化。当在步态的摆动阶段期间使用外骨骼施用外力时,文献中的先前研究通常集中在人类运动中的适应。这项工作旨在在步态的摆动和姿势阶段在骨盆中存在外部施加力时,在人类行走中研究适应。一种新型的旋系骨盆辅助装置(TPAD)被用来在行走时被动地在人骨盆上施加向下的力。在实验期间,健康受试者以恒定的速度在跑步机上行走,同时记录其运动学和脚压数据。数据分析表明,健康受试者表现出反应性以及它们的步态参数的适应性变化。受试者的直接反应是增加他们的臀部屈曲,以清除脚踏场,因为它们在正常运动期间无法将骨盆抬到其通常的高度。研究中的八个受试者中的七个抵制了向下的力量移动他们的骨盆。最终,他们达到了他们可以维持训练的向下力量。在步态循环期间,这种对向下力的这种适应反映在脚跟峰值压力值中。在移除时,观察到在步态周期期间的脚跟峰值压力的后果。

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