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The influence of malalignment and ageing following sterilisation by gamma irradiation in an inert atmosphere on the wear of ultra-high-molecular-weight polyethylene in patellofemoral replacements

机译:惰性气氛中γ射线灭菌对髌骨替代物中超高分子量聚乙烯磨损后的不对称和老化的影响

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摘要

Complications of patellofemoral arthroplasty often occur soon after implantation and, as well as other factors, can be due to the design of the implant or its surgical positioning. A number of studies have previously considered the wear of ultra-high-molecular-weight polyethylene patellae following suboptimal implantation; however, studies have primarily been carried out under a limited number of degrees of freedom. The aim of this study was to develop a protocol to assess the wear of patellae under a malaligned condition in a six-axis patellofemoral joint simulator. The malalignment protocol hindered the tracking of the patella centrally in the trochlear groove and imparted a constant 5 degrees external rotation (tilt) on the patella button. Following 3 million cycles of wear simulation, this condition had no influence on the wear of ultra-high-molecular-weight polyethylene patellae aged for 4 years compared to well-positioned non aged implants (p > 0.05). However, under the malaligned condition, ultra high-molecular-weight polyethylene patellae aged 8–10 years after unpacking (following sterilisation by gamma irradiation in an inert atmosphere) and worn ultra-high-molecularweight polyethylene components also aged 4 years after unpacking (following the same sterilisation process) exhibited a high rate of wear. Fatigue failure due to elevated contact stress led to delamination of the ultra-high-molecular weight polyethylene and in some cases complete failure of the patellae. The results suggest that suboptimal tracking of the patella in the trochlear groove and tilt of the patella button could have a significant effect on the wear of ultra-high-molecular-weight polyethylene and could lead to implant failure.
机译:tell股关节置换术的并发症通常发生在植入后不久,以及其他因素也可能归因于植入物的设计或其手术位置。先前有许多研究考虑了超高分子量聚乙烯骨在次佳植入后的磨损。但是,研究主要是在有限的自由度下进行的。这项研究的目的是开发一种协议,以评估六轴pa股关节模拟器在畸形情况下of骨的磨损。对齐方式不当会妨碍骨在滑车槽中央的跟踪,并在the骨按钮上施加恒定的5度外旋(倾斜)。经过300万次磨损模拟循环,与定位良好的非老化植入物相比,这种情况对老化4年的超高分子量聚乙烯骨的磨损没有影响(p> 0.05)。但是,在畸形的情况下,超高分子量聚乙烯骨在拆包后会老化8-10年(在惰性气氛下通过伽马射线辐照灭菌),而磨损的超高分子量聚乙烯also骨在拆包后也会老化4年。相同的灭菌过程)显示出很高的磨损率。由于接触应力升高而导致的疲劳失效导致超高分子量聚乙烯分层,并在某些情况下导致complete骨完全失效。结果表明,滑车槽中and骨的次佳追踪和pat骨钮的倾斜可能会对超高分子量聚乙烯的磨损产生重大影响,并可能导致植入失败。

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