基于实验步态对比的假肢踝关节设计与性能评价

Mohammed Ismael Hameed, Ahmed Abdul Hussein
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摘要

世界上有数百万人遭受地雷或其他导致截肢的意外事件的伤害。人体的脚在站立和移动时提供稳定和平衡。截肢会大大降低截肢者进行日常活动的能力,比如走路。任何一种假肢的主要目标都是改善或恢复身体残疾的人的功能。虽然,替代假肢技术发展迅速,但遗憾的是,它离探究具有相当功能的假肢置换还很遥远。本研究旨在设计和制造一种双自由度的踝关节旋转,矢状面跖屈-背屈,额平面倒置-外翻,以模仿人类的正常步态,并减轻残肢的疼痛和压力。大部分脚踝部件由铝合金制成,并组装成碳纤维脚层压脚。在相同的可选地面条件下,通过截肢者用户案例研究对其假肢足和设计足进行步态分析。用户的足角反应为:版本2.60,反转2.60,足底8.70,背5.30,而设计的足角反应为:版本9.50,反转9.80,足底10.20,背10.40。在足跖和背屈角度下,实现的正面最大滚转角度为100,矢状面最大滚转角度分别为120、180。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prosthetic Ankle Design and Performance Evaluation by Experimental Gait Comparison
There are millions of persons in this world have been suffered from land mines or other accidental events which have caused amputations. The human body feet provide stability and balance when standing and moving. Amputation of a foot highly decrease the amputee’s ability to practice common activities such as walking. The main target of a prostheses of any kind is to improve or return function to a physically disabled person. Although, the rapid developing of alternative prostheses technology, unfortunately, it is still a far from inquiring quite functional prosthetic limb replacement. The present study was focused on design and manufacturing of a two degree of freedom ankle rotation, plantar flexion- dorsiflexion in sagittal plane and inversion - eversion in frontal plain so as to mimic the normal human gait and also to reduce the pain and stress in the residual limb. Most ankle parts were formed from aluminum alloy and assembled to a carbon fiber foot laminated foot. The gait analysis was performed by the amputee user case study for both his prosthetic foot and the designed foot at the same optional ground surface conditions. The user foot angles responses were: eversion 2.60, inversion 2.60, plantar 8.70, dorsi 5.30, in contrast, the designed foot angles were: eversion 9.50, inversion 9.80, plantar 10.20, dorsi 10.40. The achieved designed maximum rolling in frontal plane was 100 inversion- eversion angle and the maximum rolling in sagittal plane were 120, 180 for plantar and dorsi flexion angle respectively.
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