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分析骨-假体界面微动对于非骨水泥胫骨假体固定的影响及其与加载条件的关系。

Analysis of bone-prosthesis interface micromotion for cementless tibial prosthesis fixation and the influence of loading conditions.

机构信息

Department of Mechanical Engineering, Imperial College London, Exhibition Road, London SW7 2AZ, UK.

出版信息

J Biomech. 2010 Apr 19;43(6):1074-80. doi: 10.1016/j.jbiomech.2009.12.006. Epub 2010 Mar 1.

Abstract

A lack of initial stability of the fixation is associated with aseptic loosening of the tibial components of cementless knee prostheses. With sufficient stability after surgery, minimal relative motion between the prosthesis and bone interfaces allows osseointegation to occur thereby providing a strong prosthesis-to-bone biological attachment. Finite element modelling was used to investigate the bone-prosthesis interface micromotion and the relative risk of aseptic loosening. It was anticipated that by prescribing different joint loads representing gait and other activities, and the consideration of varying tibial-femoral contact points during knee flexion, it would influence the computational prediction of the interface micromotion. In this study, three-dimensional finite element models were set up with applied loads representing walking and stair climbing, and the relative micromotions were predicted. These results were correlated to in-vitro measurements and to the results of prior retrieval studies. Two load conditions, (i) a generic vertical joint load of 3 x body weight with 70%/30%M/L load share and antero-posterior/medial-lateral shear forces, acted at the centres of the medial and lateral compartments of the tibial tray, and (ii) a peak vertical joint load at 25% of the stair climbing cycle with corresponding antero-posterior shear force applied at the tibial-femoral contact points of the specific knee flexion angle, were found to generate interface micromotion responses which corresponded to in-vivo observations. The study also found that different loads altered the interface micromotion predicted, so caution is needed when comparing the fixation performance of various reported cementless tibial prosthetic designs if each design was evaluated with a different loading condition.

摘要

固定的初始稳定性不足与非骨水泥膝关节假体的胫骨部件的无菌性松动有关。手术后具有足够的稳定性,假体和骨界面之间的最小相对运动允许骨整合发生,从而提供了强大的假体 - 骨生物附着。有限元建模用于研究骨 - 假体界面微动和无菌性松动的相对风险。预计通过规定代表步态和其他活动的不同关节载荷,并考虑膝关节屈曲过程中胫骨 - 股骨接触点的变化,将影响界面微动的计算预测。在这项研究中,建立了代表行走和爬楼梯的应用载荷的三维有限元模型,并预测了相对微动。这些结果与体外测量和先前检索研究的结果相关。两种载荷条件,(i)胫骨托的内侧和外侧腔室中心作用的通用垂直关节载荷为 3 x 体重,70%/30%M/L 载荷分担以及前后/内外剪切力,和(ii)在爬楼梯周期的 25%处作用的峰值垂直关节载荷,以及在特定膝关节屈曲角度的胫骨 - 股骨接触点处施加相应的前后剪切力,被发现产生与体内观察结果相对应的界面微动响应。该研究还发现,不同的载荷改变了预测的界面微动,因此,如果每个设计都使用不同的加载条件进行评估,在比较各种报告的非骨水泥胫骨假体设计的固定性能时需要谨慎。

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