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Evaluation of a Powered Ankle-Foot Prosthesis during Slope Ascent Gait

机译:斜坡上升步态过程中动力足踝假体的评估

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摘要

Passive prosthetic feet lack active plantarflexion and push-off power resulting in gait deviations and compensations by individuals with transtibial amputation (TTA) during slope ascent. We sought to determine the effect of active ankle plantarflexion and push-off power provided by a powered prosthetic ankle-foot (PWR) on lower extremity compensations in individuals with unilateral TTA as they walked up a slope. We hypothesized that increased ankle plantarflexion and push-off power would reduce compensations commonly observed with a passive, energy-storing-returning prosthetic ankle-foot (ESR). We compared the temporal spatial, kinematic, and kinetic measures of ten individuals with TTA (age: 30.2 ± 5.3 yrs) to matched abled-bodied (AB) individuals during 5° slope ascent. The TTA group walked with an ESR and separately with a PWR. The PWR produced significantly greater prosthetic ankle plantarflexion and push-off power generation compared to an ESR and more closely matched AB values. The PWR functioned similar to a passive ESR device when transitioning onto the prosthetic limb due to limited prosthetic dorsiflexion, which resulted in similar deviations and compensations. In contrast, when transitioning off the prosthetic limb, increased ankle plantarflexion and push-off power provided by the PWR contributed to decreased intact limb knee extensor power production, lessening demand on the intact limb knee.
机译:被动假脚缺乏主动的足底屈曲和下垂力量,导致步态上升和倾斜时上升的截肢患者进行补偿。我们试图确定主动式踝关节足屈肌(PWR)提供的主动踝足屈曲和下垂力量对单侧TTA上坡的患者下肢补偿的影响。我们假设增加脚踝的足底屈曲和下垂力量将减少通常在被动的,能量储存返回的假肢脚踝(ESR)中观察到的补偿。我们比较了10个TTA个体(年龄:30.2±5.3岁)与匹配的健全(AB)个体在5°坡度上升期间的时空,运动学和动力学度量。 TTA小组与ESR同行,并与PWR同行。与ESR相比,PWR产生的假肢踝关节屈曲和推举动力明显增加,并且AB值更接近。由于受限的假体背屈,PWR的功能类似于被动式ESR装置,其功能类似于假体背屈。相反,当从假肢过渡时,PWR提供的踝关节increased屈增加和下推力有助于减少完整的肢体膝盖伸肌的力量,从而减少对完整的肢体膝盖的需求。

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