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Functional evaluation of a non-assembly 3D-printed hand prosthesis

机译:非组装3D印刷手假体的功能评估

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摘要

In developing countries, the access of amputees to prosthetic devices is very limited. In a way to increase accessibility of prosthetic hands, we have recently developed a new approach for the design and 3D printing of non-assembly active hand prostheses using inexpensive 3D printers working on the basis of material extrusion technology. This article describes the design of our novel 3D-printed hand prosthesis and also shows the mechanical and functional evaluation in view of its future use in developing countries. We have fabricated a hand prosthesis using 3D printing technology and a non-assembly design approach that reaches certain level of functionality. The mechanical resistance of critical parts, the mechanical performance, and the functionality of a non-assembly 3D-printed hand prosthesis were assessed. The mechanical configuration used in the hand prosthesis is able to withstand typical actuation forces delivered by prosthetic users. Moreover, the activation forces and the energy required for a closing cycle are considerably lower as compared to other body-powered prostheses. The non-assembly design achieved a comparable level of functionality with respect to other body-powered alternatives. We consider this prosthetic hand a valuable option for people with arm defects in developing countries.
机译:在发展中国家,对假肢装置的禁令的进入非常有限。在一种增加假肢手的可达性的方法中,我们最近使用基于材料挤出技术的廉价3D打印机开发了一种用于非装配主动手假体的设计和3D打印的新方法。本文介绍了我们的新型3D印刷手使假体的设计,并且鉴于其在发展中国家的未来使用,还显示了机械和功能评估。我们使用3D打印技术和非装配设计方法制作了一款手持假肢,达到了一定的功能。评估关键部件,机械性能和非组装3D印刷手假体的机械性能的机械电阻。手使假体中使用的机械结构能够承受假肢​​用户传递的典型致动力。此外,与其他体动力假体相比,闭合循环所需的活化力和闭合循环所需的能量相当较低。非组装设计相对于其他体供电替代方案实现了相当的功能水平。我们认为这款假肢对发展中国家的手臂缺陷的人有价值的选择。

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