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超高分子量聚乙烯与PEEK-OPTIMA™配对时的第三体磨损

Third Body Wear of UHMWPE-on-PEEK-OPTIMA™.

作者信息

Cowie Raelene M, Pallem Naveen Manikya, Briscoe Adam, Jennings Louise M

机构信息

Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds LS2 9JT, UK.

Invibio Ltd., Invibio Global Technology Centre, Hillhouse International, Thornton-Cleveleys, Lancashire FY5 4QD, UK.

出版信息

Materials (Basel). 2020 Mar 11;13(6):1264. doi: 10.3390/ma13061264.

Abstract

PEEK-OPTIMA™ is being considered as an alternative to cobalt chrome (CoCr) in the femoral component of total knee replacements. To date, investigations of ultra-high molecular weight polyethylene (UHMWPE)-on-PEEK have shown an equivalent wear rate to conventional implant materials under standard conditions. In this study, the third body wear performance of UHMWPE-on-PEEK was directly compared to UHMWPE-on-CoCr in a series of pin-on-plate studies using two approaches for third body damage. Damage simulation with particles of bone cement showed a significant ( < 0.001), four-fold increase in the mean surface roughness of PEEK plates compared to CoCr. However, wear simulation against the damaged plates showed no significant difference in the wear of UHMWPE pins against the different materials ( = 0.59), and a polishing effect by the pin against the PEEK plates was observed. Scratching PEEK and CoCr counterfaces with a diamond stylus to create scratches representative of severe third body damage (4 µm lip height) resulted in a significantly higher ( = 0.01) wear of UHMWPE against CoCr compared to PEEK and again, against PEEK plates, polishing by the UHMWPE pin led to a reduction in scratch lip height. This study shows that in terms of its wear performance under third body wear/damage conditions, UHMWPE-on-PEEK differs from conventional knee replacement materials.

摘要

聚醚醚酮优化型(PEEK-OPTIMA™)正被视为全膝关节置换股骨部件中钴铬合金(CoCr)的替代品。迄今为止,超高分子量聚乙烯(UHMWPE)与聚醚醚酮配对的研究表明,在标准条件下其磨损率与传统植入材料相当。在本研究中,通过一系列销盘试验,采用两种第三体损伤方式,直接比较了UHMWPE与PEEK配对和UHMWPE与CoCr配对的第三体磨损性能。用骨水泥颗粒进行损伤模拟显示,与CoCr相比,PEEK板的平均表面粗糙度显著增加(<0.001),增加了四倍。然而,对受损板进行磨损模拟时,UHMWPE销在不同材料上的磨损没有显著差异(=0.59),并且观察到销对PEEK板有抛光作用。用金刚石触针刮擦PEEK和CoCr配对表面,以产生代表严重第三体损伤(唇高4µm)的划痕,结果表明,与PEEK相比,UHMWPE在CoCr上的磨损显著更高(=0.01),同样,对于PEEK板,UHMWPE销的抛光导致划痕唇高降低。本研究表明,在第三体磨损/损伤条件下,UHMWPE与PEEK配对的磨损性能与传统膝关节置换材料不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6564/7142899/ac8444e7f8ce/materials-13-01264-g001.jpg

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