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几何设计参数对膝关节植入物性能的贡献:贴合度对运动学和接触力学的冲突影响。

Contribution of geometric design parameters to knee implant performance: Conflicting impact of conformity on kinematics and contact mechanics.

作者信息

Ardestani Marzieh M, Moazen Mehran, Jin Zhongmin

机构信息

State Key Laboratory for Manufacturing System Engineering, School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an, China.

Medical and Biological Engineering, School of Engineering, University of Hull, Hull, UK.

出版信息

Knee. 2015 Jun;22(3):217-24. doi: 10.1016/j.knee.2015.02.011. Epub 2015 Mar 17.

Abstract

BACKGROUND

Articular geometry of knee implant has a competing impact on kinematics and contact mechanics of total knee arthroplasty (TKA) such that geometry with lower contact pressure will impose more constraints on knee kinematics. The geometric parameters that may cause this competing effect have not been well understood. This study aimed to quantify the underlying relationships between implant geometry as input and its performance metrics as output.

METHODS

Parametric dimensions of a fixed-bearing cruciate retaining implant were randomized to generate a number of perturbed implant geometries. Performance metrics (i.e., maximum contact pressure, anterior-posterior range of motion [A-P ROM] and internal-external range of motion [I-E ROM]) of each randomized design were calculated using finite element analysis. The relative contributions of individual geometric variables to the performance metrics were then determined in terms of sensitivity indices (SI).

RESULTS

The femoral and tibial distal or posterior radii and femoral frontal radius are the key parameters. In the sagittal plane, distal curvature of the femoral and tibial influenced both contact pressure, i.e., SI=0.57; SI=0.65, and A-P ROM, i.e., SI=0.58; SI=0.6, respectively. However, posterior curvature of the femoral and tibial implants had a smaller impact on the contact pressure, i.e., SI=0.31; SI=0.23 and a higher impact on the I-E ROM, i.e., SI=0.72; SI=0.58. It is noteworthy that in the frontal plane, frontal radius of the femoral implant impacted both contact pressure (SI=0.38) and I-E ROM (SI=0.35).

CONCLUSION

Findings of this study highlighted how changes in the conformity of the femoral and tibial can impact the performance metrics.

摘要

背景

膝关节植入物的关节几何形状对全膝关节置换术(TKA)的运动学和接触力学有相互竞争的影响,即接触压力较低的几何形状会对膝关节运动学施加更多限制。导致这种相互竞争效应的几何参数尚未得到很好的理解。本研究旨在量化作为输入的植入物几何形状与其作为输出的性能指标之间的潜在关系。

方法

对固定平台保留交叉韧带植入物的参数尺寸进行随机化处理,以生成多种受扰的植入物几何形状。使用有限元分析计算每个随机设计的性能指标(即最大接触压力、前后活动范围[A-P ROM]和内外活动范围[I-E ROM])。然后根据灵敏度指数(SI)确定各个几何变量对性能指标的相对贡献。

结果

股骨和胫骨远端或后半径以及股骨额状面半径是关键参数。在矢状面中,股骨和胫骨的远端曲率对接触压力(SI=0.57;SI=0.65)和A-P ROM(SI=0.58;SI=0.6)均有影响。然而,股骨和胫骨植入物的后曲率对接触压力的影响较小(SI=0.31;SI=0.23),对I-E ROM的影响较大(SI=0.72;SI=0.58)。值得注意的是,在额状面中,股骨植入物的额状面半径对接触压力(SI=0.38)和I-E ROM(SI=0.35)均有影响。

结论

本研究结果突出了股骨和胫骨贴合度的变化如何影响性能指标。

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