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下肢假肢:晶格和四杆多心膝关节的优化。

Lower limb prosthesis: Optimization by lattice and four-bar polycentric knee.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:4801-4807. doi: 10.1109/EMBC46164.2021.9630785.

Abstract

Diabetes has brought several health problems; one of the most common is the amputation of the lower limb, for which the development of low-cost lower limb prostheses has taken on an important role to allow people with these injuries to continue independently with their lives. This paper proposes developing a transfemoral prosthesis for a 47-year-old patient with a weight of 100kg and a height of 1.80m. The approach shows the kinematic model of the four-bar mechanism of the knee, following the Denavith-Hartenberg method, and the calculation of the knee angle curve and the gait with the help of OpenSim. Consequently, it is shown the design of the parts of the prosthesis done in Autodesk Fusion 360 and their optimization by a lattice in Creo software. Finally, the stress simulations in Ansys with the materials previously selected in CES EduPack are presented.

摘要

糖尿病带来了多种健康问题;其中最常见的是下肢截肢,为此开发低成本的下肢假肢具有重要作用,使这些受伤的人能够继续独立生活。本文提出为一位 47 岁、体重 100 公斤、身高 1.80 米的患者开发一款股骨假体。该方法展示了遵循 Denavith-Hartenberg 方法的四杆机构膝关节运动学模型,并借助 OpenSim 计算膝关节角度曲线和步态。由此,展示了在 Autodesk Fusion 360 中设计的假肢部件及其在 Creo 软件中通过格架进行的优化。最后,展示了使用 CES EduPack 中先前选择的材料在 Ansys 中的应力模拟。

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