首页> 外文期刊>BioMed research international >PMMA Third-Body Wear after Unicondylar Knee Arthroplasty Decuples the UHMWPE Wear Particle Generation In Vitro
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PMMA Third-Body Wear after Unicondylar Knee Arthroplasty Decuples the UHMWPE Wear Particle Generation In Vitro

机译:Uniconylar膝盖关节置换术后的PMMA第三身磨损在体外解除UHMWPE磨损粒子生成

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Introduction. Overlooked polymethylmethacrylate after unicondylar knee arthroplasty can be a potential problem, since this might influence the generated wear particle size and morphology. The aim of this study was the analysis of polyethylene wear in a knee wear simulator for changes in size, morphology, and particle number after the addition of third-bodies. Material and Methods. Fixed bearing unicondylar knee prostheses (UKA) were tested in a knee simulator for 5.0 million cycles. Following bone particles were added for 1.5 million cycles, followed by 1.5 million cycles with PMMA particles. A particle analysis by scanning electron microscopy of the lubricant after the cycles was performed. Size and morphology of the generated wear were characterized. Further, the number of particles per 1 million cycles was calculated for each group. Results. The particles of all groups were similar in size and shape. The number of particles in the PMMA group showed 10-fold higher values than in the bone and control group (PMMA: 10.251 × 10~(12); bone: 1.145 × 10~(12); control: 1.804 × 10~(12)). Conclusion. The addition of bone or PMMA particles in terms of a third-body wear results in no change of particle size and morphology. PMMA third-bodies generated tenfold elevated particle numbers. This could favor an early aseptic loosening.
机译:介绍。俯视着多个甲基丙烯酸甲酯后,在联张松达膝盖关节置换术后可能是一个潜在的问题,因为这可能影响产生的磨损粒度和形态。该研究的目的是分析膝关节磨损模拟器中的聚乙烯磨损,用于添加第三体后的大小,形貌和粒子数。材料与方法。固定的轴承联合杆膝关节假肢(UKA)在膝盖模拟器中进行了50万次。加入骨颗粒后,加入150万次循环,然后用PMMA颗粒接下来有150万次循环。进行循环后扫描润滑剂的电子显微镜通过扫描电子显微镜的颗粒分析。表征产生的磨损的大小和形态。此外,针对每组计算每100万个循环颗粒的数量。结果。所有组的颗粒的尺寸和形状相似。 PMMA组中的颗粒数量比骨骼和对照组更高的值(PMMA:10.251×10〜(12);骨:1.145×10〜(12);控制:1.804×10〜(12 )))。结论。在第三体磨损方面加入骨骼或PMMA颗粒不会导致粒度和形态的变化。 PMMA第三机构产生十倍升高的粒子数。这可能有利于早期无菌松动。

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