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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Design and Evaluation of a Passive Ankle Prosthesis With Powered Push-Off
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Design and Evaluation of a Passive Ankle Prosthesis With Powered Push-Off

机译:动力推式被动踝假体的设计与评估

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摘要

Below-knee amputation is one of the most frequently performed types of amputation in the United States. This paper describes CamWalk, a novel passive ankle prosthesis that has mechanical behavior similar to that of a natural ankle. CamWalk generates rotational push-off to propel the walker forward using a compliant coupling between two degrees-of-freedom (DOFs) (deflection along the leg and rotation about the ankle). The design closely matches the ankle torque and ankle work characteristics of an average healthy ankle. Simulation results indicate that CamWalk generates 44.5% of the net rotational work performed by a natural healthy ankle when leg deflection is limited to 15 mm. Standard gait analysis of four amputees using CamWalk demonstrated that the device performance ranged from marginally dissipative to significantly active, generating 48.0% of the work performed by their natural ankle.
机译:膝盖以下截肢是美国最常进行的截肢类型之一。本文介绍了CamWalk,这是一种新型的被动式踝关节假体,其机械行为类似于自然的踝部。 CamWalk使用两个自由度(DOF)之间的顺应性耦合(沿腿部偏转和围绕脚踝的旋转)生成旋转推力,以将步行者向前推动。该设计与普通健康脚踝的脚踝扭矩和脚踝工作特性紧密匹配。仿真结果表明,当腿部偏斜限制在15 mm以内时,CamWalk产生了自然健康脚踝完成的净旋转功的44.5%。使用CamWalk对四名截肢者的标准步态分析表明,该设备的性能范围从轻微耗散到活跃,产生了其自然脚踝完成的工作的48.0%。

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