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Advances in the processing, sterilization, and crosslinking of ultra-high molecular weight polyethylene for total joint arthroplasty.

机译:用于全关节置换术的超高分子量聚乙烯的加工,灭菌和交联方面的进展。

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Despite the recognized success and worldwide acceptance of total joint arthroplasty, wear is a major obstacle limiting the longevity of implanted UHMWPE components. Efforts to solve the wear problem in UHMWPE have spurred numerous detailed studies into the structure, morphology, and mechanical properties of the polymer at every stage of its production from original resin into stock material and final fabricated form. Scientific developments in this field are occurring at an accelerating rate, and periodic review of UHMWPE technology is therefore increasingly necessary. The present article provides a four-part comprehensive review of technological advancements in the processing, manufacture, sterilization, and crosslinking of UHMWPE for total joint replacements. The first part of this article describes the recently updated nomenclature of UHMWPE, including the process of resin production and conversion to stock material. The second part outlines the methods of manufacturing UHMWPE into joint replacement components and provides overviews of alternate forms of UHMWPE, namely carbon-fiber reinforced UHMWPE (Poly II) and UHMWPE recrystallized under high temperature and pressure (Hylamer). The third part summarizes the sterilization and degradation of UHMWPE. Newly developed methods for accelerating the oxidation of UHMWPE after sterilization (for preconditioning of test specimens), as well as methods for quantifying the oxidation of UHMWPE, are also discussed. Finally, the fourth part reviews the development and properties of crosslinked UHMWPE, a promising alternate biomaterial for total joint replacements.
机译:尽管公认的成功和全关节置换术的全球认可,磨损仍然是限制植入的UHMWPE组件使用寿命的主要障碍。解决UHMWPE磨损问题的努力促使对聚合物的结构,形态和机械性能进行了许多详细研究,从原始树脂到原料再到最终制造形式的每个生产阶段。该领域的科学发展正在加速发展,因此越来越需要定期审查UHMWPE技术。本文提供了由四部分组成的全面综述,介绍了用于全关节置换的UHMWPE的加工,制造,灭菌和交联方面的技术进步。本文的第一部分描述了UHMWPE的最近更新的术语,包括树脂生产和转化为原料的过程。第二部分概述了将UHMWPE制造为接头替代组件的方法,并概述了UHMWPE的替代形式,即碳纤维增强UHMWPE(Poly II)和在高温高压下重结晶的UHMWPE(Hylamer)。第三部分概述了超高分子量聚乙烯的灭菌和降解。还讨论了在灭菌后加速UHMWPE氧化的新方法(用于试样的预处理),以及量化UHMWPE氧化的方法。最后,第四部分回顾了交联的UHMWPE的发展和特性,UHMWPE是一种有望用于全关节置换的替代生物材料。

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