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首页> 外文期刊>The Journal of arthroplasty >Highly crosslinked polyethylene in posterior-stabilized total knee arthroplasty: in vitro performance evaluation of wear, delamination, and tibial post durability.
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Highly crosslinked polyethylene in posterior-stabilized total knee arthroplasty: in vitro performance evaluation of wear, delamination, and tibial post durability.

机译:后稳定全膝关节置换术中高度交联的聚乙烯:磨损,脱层和胫骨后耐久性的体外性能评估。

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摘要

Recent advances in total knee arthroplasty (TKA) include the development of highly crosslinked polyethylene (HXPE). To assess the suitability of using HXPE in posterior-stabilized TKA, knee simulator wear testing and a novel tibial post durability test were performed on a modern posterior-stabilized implant design with both conventional polyethylene (CPE) and HXPE materials. The laboratory testing reproduced clinically relevant wear and tibial post damage mechanisms. For the designs tested, wear volume was reduced by 67% to 75% for aged HXPE compared with aged CPE. Components of HXPE also demonstrated superior tibial post durability compared with the CPE design, despite the use of unaged material to represent best-case CPE tibial post strength. With appropriate design considerations, HXPE can be successfully incorporated into a posterior-stabilized TKA.
机译:全膝关节置换术(TKA)的最新进展包括高度交联聚乙烯(HXPE)的发展。为了评估在后路稳定的TKA中使用HXPE的适用性,在现代后路植入物设计中,使用常规聚乙烯(CPE)和HXPE材料对膝关节模拟器进行了磨损测试和新型的胫骨后耐久性测试。实验室测试重现了与临床相关的磨损和胫骨后损伤机制。对于测试的设计,与老化的CPE相比,老化的HXPE的磨损量减少了67%至75%。与CPE设计相比,HXPE组件还具有出众的胫骨后耐久性,尽管使用了未老化的材料来代表CPE胫骨后强度的最佳情况。通过适当的设计考虑,HXPE可以成功地并入后路稳定的TKA。

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