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A circumferentially flanged tibial tray minimizes bone-tray shear micromotion.

机译:周向凸缘的胫骨托最小化骨托剪切微动。

摘要

Aseptic loosening of the tibial component is the major complication of total knee arthroplasty There is an association between early excessive shear micromotion between the bone and the tray of the tibial component and late aseptic loosening. Using non-linear finite element analysis, whether a tibial tray with a circumferentially flanged rim and a mating cut in the proximal tibia could minimize bone-tray shear micromotion was considered. fifteen competing tray designs with various degrees of flange curvature were assessed with the aim of minimizing bone-tray shear micromotion. A trade-off was found between reducing micromotion and increasing peripheral cancellous bone stresses. It was found that, within the limitations of the study, there was a theoretical design that could virtually eliminate micromotion due to axial loads, with minimal bone removal and without the use of screws or pegs.
机译:胫骨组件的无菌性松动是全膝关节置换术的主要并发症。骨骼和胫骨组件的托板之间的早期过度剪切微动与晚期无菌性松动之间存在关联。使用非线性有限元分析,考虑了在胫骨近端胫骨中具有周向凸缘边缘和相配合的切口的胫骨托是否可以最大程度地减少骨托盘的剪切微运动。评估了15种具有不同程度的凸缘曲率的竞争托盘设计,目的是最大程度地减少骨托盘的剪切微运动。在减少微动作和增加周围松质骨应力之间发现了一个折衷。结果发现,在研究范围内,存在一种理论设计,该设计实际上可以消除由于轴向载荷而产生的微动,同时减少了对骨骼的去除,并且无需使用螺钉或栓钉。

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