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全髋关节置换术中生理负荷的模拟。

Simulation of physiological loading in total hip replacements.

作者信息

Ramos A, Fonseca F, Simões J A

机构信息

Departamento de Engenharia Mecânica Universidade de Aveiro, 3810-193 Aveiro, Portugal.

出版信息

J Biomech Eng. 2006 Aug;128(4):579-87. doi: 10.1115/1.2205864.

Abstract

The determination of biomechanical force systems of implanted femurs to obtain adequate strain measurements has been neglected in many published studies. Due to geometric alterations induced by surgery and those inherent to the design of the prosthesis, the loading system changes because the lever arms are modified. This paper discusses the determination of adequate loading of the implanted femur based on the intact femur-loading configuration. Four reconstructions with Lubinus SPII, Charnley Roundback, Muller Straight and Stanmore prostheses were used in the study. Pseudophysiologic and nonphysiologic implanted system forces were generated and assessed with finite element analysis. Using an equilibrium system of forces composed by the Fx (medially direction) component of the hip contact force and the bending moments Mx (median plane) and My (coronal plane) allowed adequate, pseudo-physiological loading of the implanted femur. We suggest that at least the bending moment at the coronal plane must be restored in the implanted femur-loading configuration.

摘要

在许多已发表的研究中,为获得足够的应变测量值而对植入股骨的生物力学力系统进行测定的工作被忽视了。由于手术引起的几何改变以及假体设计所固有的改变,加载系统会发生变化,因为力臂被改变了。本文讨论了基于完整股骨加载配置来确定植入股骨的适当加载。该研究使用了四种假体进行重建,分别是Lubinus SPII、Charnley Roundback、Muller Straight和Stanmore假体。通过有限元分析生成并评估了假生理和非生理植入系统力。使用由髋关节接触力的Fx(内侧方向)分量以及弯矩Mx(正中平面)和My(冠状平面)组成的力平衡系统,可以对植入股骨进行适当的假生理加载。我们建议,在植入股骨加载配置中,至少必须恢复冠状平面的弯矩。

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