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Antagonistic active knee prosthesis. A metabolic cost of walking comparison with a variable-damping prosthetic knee

机译:拮抗活动膝关节假体。行走与可变阻尼假肢比较的代谢成本

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This paper examines the impact of a biomimetic active knee prosthesis on the metabolic costs associated with a unilateral transfemoral amputee walking at self selected speed. In this study we compare the antagonistic active knee prosthesis developed at MIT to an electronically controlled, variable-damping commercial knee prosthesis, the Otto Bock C-leg. Use of the active knee prosthesis resulted in both, a 17% increase in an amputee's average self selected walking speed from 1.12 m/s to 1.31 m/s, and a 6.8% reduction in metabolic cost. The results of this study suggest that an agonist-antagonist active knee prosthesis design with variable impedance control can offer walking energetic advantages over commercially available systems.
机译:本文研究了仿生活动式膝关节假体对以自行选择的速度行走的单侧经股截肢者的代谢成本的影响。在这项研究中,我们将麻省理工学院开发的拮抗活动膝关节假体与电子控制,可变阻尼的商用膝关节假体Otto Bock C-leg进行了比较。主动膝关节假体的使用使截肢者的平均自我选择行走速度从1.12 m / s增加到1.31 m / s都增加了17%,代谢成本降低了6.8%。这项研究的结果表明,具有可变阻抗控制的激动剂-拮抗剂主动式膝关节假体设计可提供优于市售系统的步行能量优势。

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