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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Effects of a Powered Knee-Ankle Prosthesis on Amputee Hip Compensations: A Case Series
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Effects of a Powered Knee-Ankle Prosthesis on Amputee Hip Compensations: A Case Series

机译:动力膝关节假体对截肢的影响:案例系列

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摘要

Transfemoral amputee gait often exhibits compensations due to the lack of ankle push-off power and control over swing foot position using passive prostheses. Powered prostheses can restore this functionality, but their effects on compensatory behaviors, specifically at the residual hip, are not well understood. This paper investigates residual hip compensations through walking experiments with three transfemoral amputees using a low-impedance powered knee-ankle prosthesis compared to their day-to-day passive prosthesis. The powered prosthesis used impedance control during stance for compliant interaction with the ground, a time-based push-off controller to deliver high torque and power, and phase-based trajectory tracking during swing to provide user control over foot placement. Experiments show that when subjects utilized the powered ankle push-off, less mechanical pull-off power was required from the residual hip to progress the limb forward. Overall positive work at the residual hip was reduced for 2 of 3 subjects, and negative work was reduced for all subjects. Moreover, all subjects displayed increased step length, increased propulsive impulses on the prosthetic side, and improved impulse symmetries. Hip circumduction improved for subjects who had previously exhibited this compensation on their passive prosthesis. These improvements in gait, especially reduced residual hip power and work, have the potential to reduce fatigue and overuse injuries in persons with transfemoral amputation.
机译:由于缺乏脚踝推迟功率并使用被动假体控制摆动脚位置,经常表现出补偿。动力假体可以恢复这种功能,但它们对补偿行为的影响,特别是在残留髋部处的效果并不顺利。本文通过使用低阻抗动力膝关节假体进行三次经罚款knkle假体来调查残留的髋关节补偿,与其日常被动假体相比,使用低阻抗动力膝关节踝关节假体。动力假体在与地面的稳定性相互作用期间使用的阻抗控制,是一种基于时间的推路控制器,以在摆动期间提供高扭矩和功率,以及基于相位的轨迹跟踪,以提供用户控制超过脚踏放置。实验表明,当受试者利用动力脚踝按下时,需要较少的机械拉出电源,从残留的臀部前进到肢体前进。残留髋关节的总体阳性工作减少了3个受试者的2个,所有受试者减少了负面工作。此外,所有受试者均显示增加的步长,增加了假体侧的推进脉冲,并改善了脉冲对称性。对于先前对其被动假体表现出这种补偿的受试者来说,髋部剪切改善。步态的这些改进,特别是残留的臀部功率和工作,具有潜力可以减少患有经犯规截肢的人的疲劳和过度使用。

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