Aesculap AG, Research & Development, Am Aesculap-Platz, D-78532 Tuttlingen, Germany.
Acta Biomater. 2013 Jun;9(6):7054-63. doi: 10.1016/j.actbio.2013.02.030. Epub 2013 Feb 26.
The objective of the present study was to evaluate the biotribological behaviour, in terms of wear and particle release, of bushings and flanges made of carbon fibre reinforced poly-ether-ether-ketone (CFR-PEEK) in articulation with a zirconium nitride (ZrN) multilayer surface coating in a rotating hinge knee system. For the bushings of the rotational and flexion axles and the medial and lateral flanges, a CFR-PEEK with 30% polyacrylonitrile fibre content was used in a new bearing combination with ZrN. In vitro wear simulation was performed for patients with metal ion hypersensitivity, using a new rotating hinge knee design with a ZrN surface articulation in comparison with the clinically established cobalt-chromium version. For the bushings and flanges made of CFR-PEEK subjected to wear simulation, the volumetric wear rates were 2.3±0.48mm(3)million(-1) cycles in articulation to cobalt-chromium as reference and 0.21±0.02mm(3)million(-1) cycles in the coupling with ZrN, a 10.9-fold decrease. The released CFR-PEEK particles were comparable in size and shape for the coupling to cobalt-chromium and ZrN with most of the particles in a size range between 0.1 and 2μm. The study reveals comparable low wear and no macroscopic surface fatigue in a new rotating hinge knee design with highly congruent flanges and axles bushings made of CFR-PEEK articulating to a ZrN multilayer surface coating. Favourable wear behaviour of the newly introduced CFR-PEEK/ZrN coupling in comparison with the clinically established CFR-PEEK/cobalt-chromium articulation was found.
本研究的目的是评估在旋转铰链膝关节系统中与氮化锆(ZrN)多层表面涂层结合使用的碳纤维增强聚醚醚酮(CFR-PEEK)衬套和法兰的生物摩擦学行为,包括磨损和颗粒释放。对于旋转和弯曲轴的衬套以及内侧和外侧法兰,使用含 30%聚丙烯腈纤维的 CFR-PEEK 与 ZrN 形成新的轴承组合。对于对金属离子过敏的患者,使用具有 ZrN 表面关节的新型旋转铰链膝关节设计进行体外磨损模拟,并与临床确立的钴铬版本进行比较。对于经过磨损模拟的 CFR-PEEK 衬套和法兰,与作为参考的钴铬相比,在与钴铬结合时的体积磨损率为 2.3±0.48mm(3)百万(-1) 循环,而与 ZrN 结合时的磨损率为 0.21±0.02mm(3)百万(-1) 循环,降低了 10.9 倍。对于与钴铬和 ZrN 的结合,释放的 CFR-PEEK 颗粒在尺寸和形状上具有可比性,大多数颗粒的尺寸在 0.1 和 2μm 之间。研究表明,在具有高度一致的法兰和轴衬套的新型旋转铰链膝关节设计中,使用 CFR-PEEK 与 ZrN 多层表面涂层结合,具有类似的低磨损和无宏观表面疲劳。与临床确立的 CFR-PEEK/钴铬关节相比,新引入的 CFR-PEEK/ZrN 结合具有有利的磨损行为。