旋转铰链型膝关节假体股胫关节面的磨损研究
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国家重点研发计划项目(2016YFC1103202),国家自然科学基金项目(31670982,11772038)


Wear Simulation on Tibiofemoral Joint Surface of Rotating Hinge Knee Prosthesis
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    摘要:

    目的 研究旋转铰链型膝关节假体在水平行走步态下的磨损状况,为该类假体的磨损评测和临床应用提供技术参考。方法 基于ISO 14243标准建立假体的磨损模型,计算旋转铰链型膝关节假体股胫关节面衬垫的磨损分布及质量磨损率,并与同一假体的体外磨损实验结果对比。结果 有限元分析和体外实验所得聚乙烯衬垫磨损率分别为26.01 mg/MC与(30.06±1.21) mg/MC(million cycle, MC,百万次循环)。有限元分析所得衬垫上表面的质量磨损率约为下表面的3.3倍,磨损区域与体外磨损测试所得的磨损区域基本一致,主要磨损区域大致对称分布在衬垫的上表面后侧偏中部区域。结论 旋转铰链型膝关节假体作为一种半限制性假体,其磨损量高于初次置换全膝关节假体,在该类产品的性能检测和评估中应该给予适当的重视。

    Abstract:

    Objective To study the wear condition of rotating hinge knee prosthesis (RHKP) during horizontal walking gait, and provide technical references for wear prediction and clinical application of this kind of prosthesis. Methods A finite element wear model of RHKP was established based on the standard ISO 14243, and the simulation results including the wear distribution and mass wear rate of tibiofemoral joint surface were compared with the results from in vitro experiments on the same type of prosthesis. Results The mass wear rate of the polyethylene insert was 26.01 mg/MC (million cycle)from finite element analysis (FEA) and (30.06±1.21) mg/MC from in vitro experiments, and the mass wear rate of the upper surface of polyethene insert from FEA was about 3.3 times that of the lower surface. The wear area obtained by FEA was basically consistent with that obtained by in vitro wear measurement. The main wear area was symmetrically distributed in the middle and back of the upper surface. Conclusions The mass wear rate of RHKP, as a semi-restrictive prosthesis, is obviously higher than that of primary total knee joint prosthesis. More attention should be paid to wear test and evaluation of RHKP.

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张霁,刘昆玺,周星辰,唐佳伟,朱晓雨,赵峰,樊瑜波.旋转铰链型膝关节假体股胫关节面的磨损研究[J].医用生物力学,2022,37(4):591-596

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  • 收稿日期:2021-06-18
  • 最后修改日期:2021-09-25
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  • 在线发布日期: 2022-08-25
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