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使用非骨水泥型超短柄进行全髋关节置换术:针对一名年轻患者临床病例的个体化有限元分析

Total hip arthroplasty by using a cementless ultrashort stem: a subject-specific finite element analysis for a young patient clinical case.

作者信息

Epasto Gabriella, Foti Albina, Guglielmino Eugenio, Rosa Michele A

机构信息

Department of Electronic Engineering, Chemistry and Industrial Engineering, University of Messina, Messina, Italy.

出版信息

Proc Inst Mech Eng H. 2013 Jul;227(7):757-66. doi: 10.1177/0954411913482267. Epub 2013 Mar 26.

Abstract

In this article, a subject-specific finite element analysis has been developed to study a clinical case of a surgically misaligned hip prosthesis with an ultrashort stem. It was set out to study the strain energy density pattern, comparing the results obtained with computed tomography images. The authors developed two other numerical models: the first one analyzes the stress and strain distributions in the healthy femur (without prosthesis) and the second one analyzes the same boneimplant biomechanical system of the clinical case but assuming the prosthesis in the proper position. The misaligned prosthesis produced an overload at the proximal posterior plane of the femur, as confirmed by computed tomography images, which detect the formation of new bone. The numerical model of the correctly positioned prosthesis demonstrated that the bone is not overloaded and that the position of neutral axis does not significantly shift from the physiological condition.

摘要

在本文中,已开展了一项针对特定个体的有限元分析,以研究一例使用超短柄的手术安装错位髋关节假体的临床病例。旨在研究应变能密度模式,并将所得结果与计算机断层扫描图像进行比较。作者还开发了另外两个数值模型:第一个分析健康股骨(无假体)中的应力和应变分布,第二个分析临床病例中相同的骨-植入物生物力学系统,但假设假体处于正确位置。如计算机断层扫描图像所证实,错位的假体在股骨近端后平面产生了过载,该图像检测到了新骨的形成。正确定位假体的数值模型表明,骨骼未出现过载,中性轴的位置与生理状态相比没有明显偏移。

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