首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Interface abrasion between rough surface femoral stems and PMMA cement results in extreme wear volumes-A retrieval study and failure analysis
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Interface abrasion between rough surface femoral stems and PMMA cement results in extreme wear volumes-A retrieval study and failure analysis

机译:股骨干表面与PMMA水泥之间的界面磨损导致极高的磨损量-检索研究和失效分析

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During the loosening cascade of cemented rough femoral stems, the destruction of the mantle and the production of cement and metal wear debris occur after the loss of constraint at the interface. Two-dimensional (2D) measurements (light microscopy based morphometry on fragments of mantles and vertical scanning interferometry of femoral stems) permitted mathematical 3D-extrapolations to estimate the wear volumes. Fragments of the cement mantles available lost volumes from 0.85 mm(3) to 494.10 mm(3) (median amount of bone cement wear=178,426 mg). The harder metal surfaces lost between 1.459 mm(3) and 5.688 mm(3) of material (the median amount of metal wear per surface=1.504 mg/100 mm(2)). Compared to the loss of material due to the fretting of stems, the abrasion of metal, and cement in defective cement mantles produced wear volumes sufficiently high to induce osteolysis. Though the design of the femoral stem and the handling of bone cement do not represent contemporary design and clinical practice, respectively, an extremely high number of joint replacements still in daily use may be impacted by this study because of possible predicted failures. Once the processes of fragmentation, abrasion, and osteolysis have been realized, the time until revision surgery should not be unduly prolonged. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 229-241, 2015.
机译:在松散固结的粗大股骨柄的级联过程中,在界面处失去约束后,会发生覆盖层的破坏以及水泥和金属磨损碎片的产生。二维(2D)测量(基于光学显微镜的地幔碎片形态学分析和股骨柄的垂直扫描干涉测量法)允许数学3D外推法估算磨损量。可用的水泥套碎片损失的体积从0.85 mm(3)到494.10 mm(3)(骨水泥磨损的中位数= 178,426 mg)。较硬的金属表面损失了1.459 mm(3)至5.688 mm(3)的材料(每个表面的金属磨损中位数= 1.504 mg / 100 mm(2))。与由于杆的微动而造成的材料损失相比,缺陷水泥套中金属和水泥的磨损产生的磨损量足够高,足以引起骨溶解。尽管股骨柄的设计和骨水泥的处理分别不能代表现代设计和临床实践,但是由于可能的预测失败,这项仍可能影响每天仍在使用的关节置换术的数量非常高。一旦认识到破碎,磨损和溶骨的过程,就不应过分延长翻修手术的时间。 (c)2014 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,103B:229-241,2015。

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