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Future Bearing Surfaces in Total Hip Arthroplasty

机译:全髋关节置换术中未来的轴承表面

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摘要

One of the most important issues in the modern total hip arthroplasty (THA) is the bearing surface. Extensive research on bearing surfaces is being conducted to seek an ideal bearing surface for THA. The ideal bearing surface for THA should have superior wear characteristics and should be durable, bio-inert, cost-effective, and easy to implant. However, bearing surfaces that are currently being implemented do not completely fulfill these requirements, especially for young individuals for whom implant longevity is paramount. Even though various new bearing surfaces have been investigated, research is still ongoing, and only short-term results have been reported from clinical trials. Future bearing surfaces can be developed in the following ways: (1) change in design, (2) further improvement of polyethylene, (3) surface modification of the metal, (4) improvement in the ceramic, and (5) use of alternative, new materials. One way to reduce wear and impingement in THA is to make changes in its design by using a large femoral head, a monobloc metal shell with preassembled ceramic liner, dual mobility cups, a combination of different bearing surfaces, etc. Polyethylene has improved over time with the development of highly crosslinked polyethylene. Further improvements can be made by reinforcing it with vitamin E or multiwalled carbon nanotubes and by performing a surface modification with a biomembrane. Surface modifications with titanium nitride or titanium niobium nitride are implemented to try to improve the metal bearings. The advance to the fourth generation ceramics has shown relatively promising results, even in young patients. Nevertheless, further improvement is required to reduce fragility and squeaking. Alternative materials like diamond coatings on surfaces, carbon based composite materials, oxidized zirconium, silicon nitride, and sapphire are being sought. However, long-term studies are necessary to confirm the efficacy of these surfaces after enhancements have been made with regard to fixation technique and implant quality.
机译:在现代的全髋关节置换术(THA)中,最重要的问题之一是轴承表面。为了寻找理想的THA轴承表面,正在对轴承表面进行广泛的研究。 THA的理想轴承表面应具有出色的耐磨性,并且应耐用,具有生物惰性,成本效益高且易于植入。然而,当前正在实施的支承表面不能完全满足这些要求,特别是对于植入物寿命至关重要的年轻人。尽管已经研究了各种新的轴承表面,但研究仍在进行中,临床试验仅报道了短期结果。可以通过以下方式开发未来的轴承表面:(1)设计变更;(2)聚乙烯的进一步改进;(3)金属的表面改性;(4)陶瓷的改进;(5)使用替代方法,新材料。减少THA磨损和撞击的一种方法是通过使用大型股骨头,带有预组装陶瓷衬里的整体金属外壳,双活动杯,不同轴承表面的组合等来更改其设计。随着高度交联聚乙烯的发展。通过使用维生素E或多壁碳纳米管进行增强,以及通过生物膜进行表面改性,可以实现进一步的改进。实施了用氮化钛或氮化钛铌的表面改性,以试图改善金属轴承。即使在年轻患者中,第四代陶瓷的进步也显示出相对可喜的结果。然而,需要进一步改进以减少脆性和吱吱声。正在寻找替代材料,例如表面的金刚石涂层,碳基复合材料,氧化锆,氮化硅和蓝宝石。但是,在固定技术和植入物质量得到增强之后,需要长期研究来确认这些表面的功效。

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