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The influence of surgical malalignment on the contact pressures of fixed and mobile bearing knee prostheses--a biomechanical study.

机译:手术错位对固定和活动轴承膝关节假体接触压力的影响-生物力学研究。

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Objective. To investigate the effect of surgical malalignment on contact pressures of fixed and mobile bearing knee prostheses.Design. An experimental set-up was used to measure contact pressure on the tibial component of fixed and mobile bearing knee prostheses subjected to a compression load and surgical malalignment situations were simulated.Background. Mobile bearing knee prostheses were designed to decrease tibiofemoral contact pressure by providing both high congruity and mobility. It was also assumed to accommodate surgical malalignment. However, few studies have reported the effect of malalignment of the tibiofemoral joint on contact pressure of fixed and mobile bearing knee prostheses.Methods. Surgical malalignment situations were simulated to evaluate contact characteristics of tibial component of fixed and mobile bearing knee prostheses. The simulated malalignment conditions include the medial-lateral translation (0.5 and 1 mm), anterior-posterior translation (2 and 4 mm) and internal-external rotation (1 degrees, 3 degrees, 5 degrees and 10 degrees ) of the femoral component relative to the tibial component. Fuji pressure sensitive film was used to measure the contact pressure.Results. The greatest increase of maximum contact pressure in the anterior-posterior maltranslation was 7.63% and 7.62% relative to the neutral contact situation in the fixed and mobile bearing designs respectively. In the medial-lateral maltranslation, there was 23.3% in the fixed bearing design and was 22.0% in the mobile bearing design. In the internal/external malrotation, the greatest increase of maximum contact pressure in the fixed bearing design was 27.1%, which was much higher than the mobile bearing design (22.4%).Conclusions. The mobile bearing design can reduce maximum contact pressure more significantly than the fixed bearing design when malalignment conditions of the tibiofemoral joint occurs, especially in the internal/external malrotation. The mobile bearing design offers the advantage of self-adjusting over the fixed bearing design to accommodate surgical malalignment.Relevance This study revealed that the mobile bearing design has smaller maximum contact pressures than the fixed bearing design in knee prosthesis under malalignment biomechanical tests. This result indicates that there is an advantage for a mobile bearing design over a fixed bearing design to accommodate malalignment conditions caused by surgical technique or soft tissues imbalance in total knee arthroplasty.
机译:目的。目的探讨手术错位对固定式和活动式膝关节假肢接触压力的影响。设计。实验装置用于测量固定和活动的承压膝关节假体在压缩载荷下胫骨组件的接触压力,并模拟手术中的错位情况。可移动的膝关节假体旨在通过提供高一致性和活动性来减少胫股接触压力。还假定它可以适应手术中的错位。然而,很少有研究报道胫股关节错位对固定和活动承压膝关节假体的接触压力的影响。模拟了手术中的错位情况,以评估固定式和活动式膝关节假体的胫骨组件的接触特性。模拟的错位情况包括股骨组件相对的内外侧平移(0.5和1 mm),前后平移(2和4 mm)和内外旋转(1度,3度,5度和10度)胫骨组件。使用富士压敏膜测量接触压力。结果。相对于固定和移动轴承设计中的中性接触情况,前后不平移中最大接触压力的最大增加分别为7.63%和7.62%。在内侧-外侧翻译不良中,固定轴承设计占23.3%,活动轴承设计占22.0%。在内部/外部旋转不良中,固定轴承设计中最大接触压力的最大增加为27.1%,远高于移动轴承设计中的最大接触压力(22.4%)。当发生胫股关节错位情况时,尤其是在内部/外部错位情况下,活动轴承设计可以比固定轴承设计更有效地降低最大接触压力。相对于固定轴承设计,活动轴承设计具有自我调节的优势,可以适应外科手术中的不对中。相关性这项研究表明,在生物力学测试不正确的情况下,与假肢相比,活动轴承设计的最大接触压力要小。该结果表明,与固定轴承设计相比,移动轴承设计具有优势,可以适应由手术技术或全膝关节置换术中软组织失衡引起的错位情况。

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