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Conceptual Design of a Fully Passive Transfemoral Prosthesis to Facilitate Energy-Efficient Gait

机译:完全被动的股骨假体的概念设计,以促进节能步态

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In this paper, we present the working principle and conceptual design toward the realization of a fully-passive transfemoral prosthesis that mimics the energetics of the natural human gait. The fundamental property of the conceptual design consists of realizing an energetic coupling between the knee and ankle joints of the mechanism. Simulation results show that the power flow of the working principle is comparable with that in human gait and a considerable amount of energy is delivered to the ankle joint for the push-off generation. An initial prototype in half scale is realized to validate the working principle. The construction of the prototype is explained together with the test setup that has been built for the evaluation. Finally, experimental results of the prosthesis prototype during walking on a treadmill show the validity of the working principle.
机译:在本文中,我们提出了一种实现完全被动的经股假体的工作原理和概念设计,该假体模仿了人类自然步态的能量。概念设计的基本属性包括实现该机制的膝盖和踝关节之间的能量耦合。仿真结果表明,该工作原理的动力流与人体步态相当,并且大量能量传递到踝关节以产生下垂。实现了半规模的初始原型以验证工作原理。解释了原型的构造以及为评估而建立的测试设置。最后,假体原型在跑步机上行走时的实验结果证明了该工作原理的有效性。

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