首页> 外文会议>1995 IEEE engineering in medicine and biology 17th annual conference and 21st Canadian medical and biological engineering conference >A COMPUTATIONAL METHOD FOR COMPARING THE BEHA VIOR AND POSSIBLE FAILURE OF PROSTHETIC IMPLANTS
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A COMPUTATIONAL METHOD FOR COMPARING THE BEHA VIOR AND POSSIBLE FAILURE OF PROSTHETIC IMPLANTS

机译:修复假体行为和可能失败的一种计算方法

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摘要

Prosthetic joint implants currently in use exhibit high failure rates. Realistic computer modeling of prosthetic implants provides an opportunity for orthopedic biomechanics researchers and physicians to understand possible in vivo failure modes, without having to resort to lengthy and costly clinical trials. The research presented here is part of a larger effort to develop realistic models of implanted joint prostheses. The example used here is the thumb carpo-metacarpal (cmc) joint. The work, however, can be applied to any other human joints for which prosthetic implants have been designed. Preliminary results of prosthetic joint loading, without surrounding human tissue (i.e., simulating conditions under which the prosthetic joint has not yet been implanted into the human joint), are presented, based on a three-dimensional, nonlinear finite element analysis of three different joint implant designs.
机译:当前使用的假关节植入物表现出高失败率。假体植入物的真实计算机建模为整形外科生物力学研究人员和医师提供了机会,以了解可能的体内衰竭模式,而不必诉诸冗长且昂贵的临床试验。此处提出的研究是开发植入式关节假体的逼真的模型的一项较大努力的一部分。此处使用的示例是拇指腕掌骨(cmc)关节。但是,这项工作可以应用于设计了假体植入物的任何其他人体关节。基于对三个不同关节的三维非线性有限元分析,给出了在不围绕人体组织的情况下假体关节负载的初步结果(即,模拟假体关节尚未植入人体关节的条件)。植入物设计。

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