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Tribo-biological deposits on the articulating surfaces of metal-on-polyethylene total hip implants retrieved from patients

机译:从患者身上回收的聚乙烯上金属全髋关节植入物的关节表面上的摩擦生物沉积物

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摘要

Artificial total hip arthroplasty (THA) is one of the most effective orthopaedic surgeries that has been used for decades. However, wear of the articulating surfaces is one of the key failure causes limiting the lifetime of total hip implant. In this paper, Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM) were employed to explore the composition and formation mechanism of the tribo-layer on the articulating surfaces of metal-on-polyethylene (MoPE) implants retrieved from patients. Results showed that, in contrast to conventional understanding, the attached tribo-layer contained not only denatured proteins but also a fraction of polymer particles. The formation of the tribo-layer was believed to relate to lubrication regime, which was supposed to be largely affected by the nature of the ultra-high-molecule-weight-polyethylene (UHMWPE). Wear and formation of tribo-layer could be minimized in elasto-hydrodynamic lubrication (EHL) regime when the UHMWPE was less stiff and have a morphology containing micro-pits; whereas the wear was more severe and tribo-layer formed in boundary lubrication. Our results and analyses suggest that enhancing interface lubrication may be more effective on reducing wear than increasing the hardness of material. This finding may shed light on the design strategy of artificial hip joints.
机译:人工全髋关节置换术(THA)是使用了数十年的最有效的骨科手术之一。但是,关节表面的磨损是导致整个髋关节植入物寿命受限的主要失效原因之一。本文采用傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和原子力显微镜(AFM)来研究金属与金属表面的表面摩擦层的组成和形成机理。从患者身上回收的聚乙烯(MoPE)植入物。结果表明,与传统理解相反,附着的摩擦层不仅包含变性蛋白质,还包含一部分聚合物颗粒。摩擦层的形成被认为与润滑方式有关,认为润滑方式在很大程度上受超高分子量聚乙烯(UHMWPE)的性质影响。当UHMWPE刚度较小且具有包含微坑的形态时,在弹性流体动力润滑(EHL)方案中,摩擦层的磨损和形成可被最小化。磨损更严重,在边界润滑中形成了摩擦层。我们的结果和分析表明,增强界面润滑可能比增加材料的硬度更有效地减少磨损。这一发现可能为人工髋关节的设计策略提供了启示。

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