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Evaluating Reachable Workspace and User Control Over Prehensor Aperture for a Body-Powered Prosthesis

机译:评估可达工作空间和用户对身体供电假体的预体孔的控制

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摘要

Using a shoulder harness and control cable, a person can control the opening and closing of a body-powered prosthesis prehensor. In many setups the cable does not pass adjacent to the shoulder joint center allowing shoulder flexion on the prosthetic side to be used for prehensor control. However, this makes cable setup a difficult compromise as prosthesis control is dependent on arm posture; too short and the space within which a person can reach may be unduly restricted, too long and the user may not be able to move their shoulder sufficiently to take up the inevitable slack at some postures and hence have no control over prehensor movement. Despite the fundamental importance of reachable workspace to users, to date there have been no studies in prosthetics on this aspect. Here, a methodology is presented to quantify the reduction in the reachable volume due to the harness, and to record the range-of-motion of the prehensor at a series of locations within the reachable workspace. Ten anatomically intact participants were assessed using a body-powered prosthesis simulator. Data was collected using a 3D motion capture system and an electronic goniometer. The harnessed reachable workspace was 38-85% the size of the unharnessed volume with participants struggling to reach across the body and above the head. Across all arm postures assessed, participants were only able to achieve full prehensor range-of-motion in 9%. The methodologies presented could be used to evaluate future designs of both body-powered and myoelectric prostheses.
机译:使用肩带和控制电缆,一个人可以控制身体动力假体预体的开启和关闭。在许多设置中,电缆不会与肩关节中心相邻,允许肩部屈曲用于预体控制的假肢侧。然而,这使得电缆设置成为假体控制取决于臂姿势时难以妥协;太短,一个人可以达到的空间可能过度限制,太长,用户可能无法充分地移动肩部以占据一些姿势的不可避免的松弛,因此没有控制预体运动。尽管可达工作空间对用户的根本重要性,但到目前为止在这方面没有研究过。这里,提出了一种方法来量化由于线束引起的可达体积的降低,并在可到达工作空间内的一系列位置记录了预体的运动范围。使用体型假体模拟器评估十个解剖学完整的参与者。使用3D运动捕获系统和电子测仪计收集数据。利用的可达工作空间为38-85%的人,与参与者努力接触身体和头顶的参与者。在评估的所有臂姿势,参与者只能在9%达到全面的预生运动范围。所提出的方法可用于评估身体供电和肌电肌的未来设计。

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