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模拟器输入条件对全膝关节置换术磨损的影响:一项实验与计算研究。

The influence of simulator input conditions on the wear of total knee replacements: An experimental and computational study.

作者信息

Brockett Claire L, Abdelgaied Abdellatif, Haythornthwaite Tony, Hardaker Catherine, Fisher John, Jennings Louise M

机构信息

Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, UK.

DePuy Synthes Joint Reconstruction, Leeds, UK.

出版信息

Proc Inst Mech Eng H. 2016 May;230(5):429-39. doi: 10.1177/0954411916645134.

Abstract

Advancements in knee replacement design, material and sterilisation processes have provided improved clinical results. However, surface wear of the polyethylene leading to osteolysis is still considered the longer-term risk factor. Experimental wear simulation is an established method for evaluating the wear performance of total joint replacements. The aim of this study was to investigate the influence of simulation input conditions, specifically input kinematic magnitudes, waveforms and directions of motion and position of the femoral centre of rotation, on the wear performance of a fixed-bearing total knee replacement through a combined experimental and computational approach. Studies were completed using conventional and moderately cross-linked polyethylene to determine whether the influence of these simulation input conditions varied with material. The position of the femoral centre of rotation and the input kinematics were shown to have a significant influence on the wear rates. Similar trends were shown for both the conventional and moderately cross-linked polyethylene materials, although lower wear rates were found for the moderately cross-linked polyethylene due to the higher level of cross-linking. The most important factor influencing the wear was the position of the relative contact point at the femoral component and tibial insert interface. This was dependent on the combination of input displacement magnitudes, waveforms, direction of motion and femoral centre of rotation. This study provides further evidence that in order to study variables such as design and material in total knee replacement, it is important to carefully control knee simulation conditions. This can be more effectively achieved through the use of displacement control simulation.

摘要

膝关节置换设计、材料及灭菌工艺的进步已带来了更好的临床效果。然而,聚乙烯表面磨损导致骨溶解仍是一个长期的风险因素。实验性磨损模拟是评估全关节置换磨损性能的既定方法。本研究的目的是通过结合实验和计算方法,研究模拟输入条件,特别是输入运动学量值、波形、运动方向以及股骨旋转中心位置,对固定平台全膝关节置换磨损性能的影响。研究使用常规聚乙烯和适度交联聚乙烯完成,以确定这些模拟输入条件的影响是否随材料而变化。结果表明,股骨旋转中心位置和输入运动学对磨损率有显著影响。常规聚乙烯和适度交联聚乙烯材料均呈现相似趋势,不过由于交联程度较高,适度交联聚乙烯的磨损率更低。影响磨损的最重要因素是股骨部件与胫骨衬垫界面处相对接触点的位置。这取决于输入位移量值、波形、运动方向和股骨旋转中心的组合。本研究进一步证明,为了研究全膝关节置换中的设计和材料等变量,仔细控制膝关节模拟条件非常重要。通过使用位移控制模拟可以更有效地实现这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e117/4873730/bc5b06e494cf/10.1177_0954411916645134-fig1.jpg

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