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Design and Preliminary Testing of a Pneumatic Muscle-Actuated Transfemoral Prosthesis

机译:气动肌肉驱动的股骨假体的设计和初步测试

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摘要

Providing powered joint actuation is a major focus of research in the lower-limb prosthesis area. The capability of actively powering the joints enables the prosthesis to meet the energetic requirements of locomotion, and thus provide higher performance in restoring the lost lower-limb functions in comparison with traditional passive prostheses. In this paper, a powered transfemoral (above-knee) prosthesis is presented, in which the knee and ankle are powered with pneumatic muscle actuators. A new variable-radius pulley-based mechanism is utilized, which enables the free adjustment of actuation torque curve to better match the desired torque curve as dictated by the locomotive requirements. Additionally, a spring-return mechanism is also incorporated, which replaces the muscle actuator in the "weak" (less torque-demanding) direction with a set of mechanical springs. With this mechanism, both knee and ankle joints can be powered while maintaining a compact profile of the prosthesis. The design details are presented, and the prosthesis is able to provide sufficient torque for an 85 kg user in various locomotion modes. A prototype of the prosthesis has been fabricated and tested, with the preliminary results indicating that this prosthesis is able to provide a walking gait similar to that of a healthy person.
机译:提供动力关节致动是下肢假体领域研究的主要重点。与传统的被动假体相比,主动为关节提供动力的能力使假体能够满足运动的能量需求,从而在恢复失去的下肢功能方面提供更高的性能。在本文中,提出了一种动力型股骨(膝盖以上)假体,其中,膝部和脚踝由气动肌肉致动器提供动力。利用了一种新的基于可变半径皮带轮的机构,该机构能够自由调节致动扭矩曲线,以更好地匹配机车要求所要求的期望扭矩曲线。另外,还装有弹簧复位机构,该机构用一组机械弹簧代替了“弱”(要求较少扭矩)方向上的肌肉致动器。通过这种机制,可以在维持假体紧凑外形的同时为膝关节和踝关节提供动力。提出了设计细节,并且假体能够在各种运动模式下为85千克使用者提供足够的扭矩。假体的原型已被制造和测试,初步结果表明该假体能够提供与健康人相似的步态。

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