首页> 外文期刊>International Orthopaedics >Oxidative properties and surface damage mechanisms of remelted highly crosslinked polyethylenes in total knee arthroplasty.
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Oxidative properties and surface damage mechanisms of remelted highly crosslinked polyethylenes in total knee arthroplasty.

机译:膝关节关节置换术中重熔高度交联聚乙烯的氧化特性和表面损伤机制。

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摘要

Remelted highly crosslinked polyethylenes (HXLPEs) were introduced in total knee replacement (TKR) starting in 2001 to reduce wear and particle-induced lysis. The purpose of this study was to investigate the damage mechanisms and oxidative stability of remelted HXLPEs used in TKR.A total of 186 posteriorly stabilised tibial components were retrieved at consecutive revision operations. Sixty nine components were identified as remelted HXLPE. The conventional inserts were implanted for 3.4?±?2.7 years, while the remelted components were implanted 1.4?±?1.2 years. Oxidation was assessed using Fourier transform infrared spectroscopy.Remelted HXLPE inserts exhibited lower oxidation indices compared to conventional inserts. We were able to detect slight regional differences within the HXLPE cohort, specifically at the bearing surface.Remelted HXLPE was effective at reducing oxidation in comparison to gamma inert sterilised controls. Additional long-term HXLPE retrievals are necessary to ascertain the long term in vivo stability of these materials in TKR.
机译:在2001年开始,在2001年开始的总膝关节置换(TKR)中引入了再嵌入高度交联的聚乙烯(HXLPE)以减少磨损和颗粒诱导的裂解。本研究的目的是探讨TKR中使用的雷熔断HXLP的损伤机制和氧化稳定性。在连续的修订操作中检索186个后稳定的胫骨组分。将六十九种成分鉴定为重新熔融的HXLPE。将常规插入物注入3.4?±2.7岁,而重熔组分植入1.4?±1.2岁。使用傅里叶变换红外光谱评估氧化。与常规插入件相比,再熔化的HXLPE插入件表现出较低的氧化指数。我们能够在HXLPE队列中检测轻微的区域差异,特别是在轴承表面上。与γ惰性无菌的对照相比,再熔化HXLPE在减少氧化时是有效的。额外的长期HXLPE检索是必要的,以确定TKR中这些材料的长期稳定性。

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