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Design and Development of a Novel Upper-Limb Cycling Prosthesis

机译:新型上肢循环假体的设计与开发

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摘要

The rise in popularity of the Paralympics in recent years has created a need for effective, low-cost sports-prosthetic devices for upper-limb amputees. There are various opportunities for lower-limb amputees to participate in cycling; however, there are only few options for those with upper-limb amputations. If the individual previously participated in cycling, a cycling-specific prosthesis could allow these activities to be integrated into rehabilitation methods. This article describes the processes involved with designing, developing and manufacturing such a prosthesis. The fundamental needs of people with upper-limb amputation were assessed and realised in the prototype of a transradial terminal device with two release mechanisms, including a sliding mechanism (for falls and minor collisions) and clamping mechanism (for head-on collisions). The sliding mechanism requires the rider to exert approximately 200 N, while the clamping mechanism requires about 700 N. The force ranges can be customised to match rider requirements. Experiments were conducted in a controlled environment to demonstrate stability of the device during normal cycling. Moreover, a volunteer test-rider was able to successfully activate the release mechanism during a simulated emergency scenario. The development of this prosthesis has the potential to enable traumatic upper-limb amputees to participate in cycling for rehabilitation or recreation.
机译:近年来,残奥会的兴起引起了对用于上肢截肢者的有效,低成本运动假肢设备的需求。下肢截肢者有多种参与自行车运动的机会;但是,上肢截肢者只有很少的选择。如果个人以前参加过自行车运动,则特定于自行车的假体可将这些活动整合到康复方法中。本文介绍了与设计,开发和制造这种假体有关的过程。在具有两个释放机构的trans径向终端设备的原型中,评估并实现了上肢截肢患者的基本需求,包括滑动机构(用于跌落和轻微碰撞)和夹紧机构(用于正面碰撞)。滑动机构要求骑行者施加大约200 N的力,而夹紧机构需要施加约700 N的力。可以定制力范围以匹配骑手的要求。在受控环境中进行了实验,以证明设备在正常循环中的稳定性。此外,在模拟的紧急情况下,自愿试车手能够成功激活释放机制。这种假体的发展具有使受伤的上肢截肢者能够参加自行车进行康复或娱乐的潜力。

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