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3D Finite Element Analysis of Bone Stress around Distaliy Osteointegrated Implant for Artificial Limb Attachment

机译:3D人工肢体附件骨骨压力骨压力有限元分析

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Stress shielding, which occurred always around traditional one part implant applied for prosthetic artificial lower limb attachment, would cause osteoporosis and thus result in the loose and extrusion, and then the malfunction of the implant. To improve the structure of the implant, a new type of implant-multi-part implant was developed in this article. Based on CT data and under the maximal load during a normal walking cycle, 3D finite element analysis (FEA) was carried out to analyze, the stress of bone around the new implant in three cases of distally truncated femur at high-position、 middle-position and low-position. Results reveal that stress shielding and stress concentration under the new type of implant reduced effectively compared with the traditional one-part implant, and the stress distribution is much close to the natural bone. Application for distally truncated femur at middle-position and low-position was much better, while stress concentration was marked at high-position. Meanwhile, the stability in vivo can also be maintained with the multi-part implant. The new implant is promising applied for prosthetic limb.
机译:应力屏蔽,总是围绕传统的一种植入物用于假肢人工下肢附着的植入物,会导致骨质疏松症,从而导致松散和挤出,然后导致植入物的故障。为了改善植入物的结构,在本文中开发了一种新型植入物 - 多部分植入物。基于CT数据和在正常步行循环期间的最大载荷下,进行了3​​D有限元分析(FEA)以分析,在高位截断股骨的三种情况下,在新植入物周围的骨压力在高位,中间 - 位置和低位。结果表明,与传统的单部分植入物相比,新型植入物下的应力屏蔽和应力浓度减少,应力分布远远近天然骨。在中位置和低位置处的远端截断股骨的应用更好,而应力集中在高位置标记。同时,体内的稳定性也可以用多部分植入物保持。新的植入物是申请假肢肢体的有希望的。

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