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Virtual prototyping of a semi-active transfemoral prosthetic leg

机译:半主动经股修复腿的虚拟原型

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摘要

This article presents a virtual prototyping study of a semi-active lower limb prosthesis to improve the functionality of an amputee during prosthesis–environment interaction for level ground walking. Articulated ankle–foot prosthesis and a single-axis semi-active prosthetic knee with active and passive operating modes were considered. Data for level ground walking were collected using a photogrammetric method in order to develop a base-line simulation model and with the hip kinematics input to verify the proposed design. The simulated results show that the semi-active lower limb prosthesis is able to move efficiently in passive mode, and the activation time of the knee actuator can be reduced by approximately 50%. Therefore, this semi-active system has the potential to reduce the energy consumption of the actuators required during level ground walking and requires less compensation from the amputee due to lower deviation of the vertical excursion of body centre of mass.
机译:本文介绍了一种半主动式下肢假肢的虚拟原型研究,以改善被截肢者在假肢-环境交互作用下进行水平地面行走时的功能。关节脚踝假肢和具有主动和被动操作模式的单轴半主动假肢被考虑。使用摄影测量方法收集用于水平地面行走的数据,以开发基线模拟模型,并通过髋部运动学输入来验证所提出的设计。仿真结果表明,半主动式下肢假肢能够在被动模式下高效移动,并且膝盖致动器的激活时间可减少约50%。因此,这种半主动系统具有减少水平地面行走过程中所需致动器能量消耗的潜力,并且由于身体质心的垂直偏移的偏差较小,因此要求截肢者的补偿较少。

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