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Tribological performance of the biological components of synovial fluid in artificial joint implants

机译:人工关节植入物中滑液生物成分的摩擦学性能

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摘要

The concentration of biological components of synovial fluid (such as albumin, globulin, hyaluronic acid, and lubricin) varies between healthy persons and osteoarthritis (OA) patients. The aim of the present study is to compare the effects of such variation on tribological performance in a simulated hip joint model. The study was carried out experimentally by utilizing a pin-on-disk simulator on ceramic-on-ceramic (CoC) and ceramic-on-polyethylene (CoP) hip joint implants. The experimental results show that both friction and wear of artificial joints fluctuate with the concentration level of biological components. Moreover, the performance also varies between material combinations. Wear debris sizes and shapes produced by ceramic and polyethylene were diverse. We conclude that the biological components of synovial fluid and their concentrations should be considered in order to select an artificial hip joint to best suit that patient.
机译:滑膜液(如白蛋白,球蛋白,透明质酸和润滑脂)的生物成分浓度在健康人和骨关节炎(OA)患者之间变化。本研究的目的是比较这种变异对模拟髋关节模型中的摩擦学性能的影响。通过在陶瓷上的陶瓷(COC)和陶瓷 - 聚乙烯(COP)髋关节植入物上通过用销磁盘模拟器进行实验进行该研究。实验结果表明,人工关节的摩擦和磨损随着生物成分的浓度水平波动。此外,性能也在材料组合之间变化。穿戴陶瓷和聚乙烯生产的碎屑尺寸和形状是多样的。我们得出结论,应该考虑滑膜流体的生物分量及其浓度,以便选择人工髋关节以最佳适合患者。

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