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Total ankle replacement design and positioning affect implant-bone micromotion and bone strains

机译:总脚踝替代设计和定位影响种植体 - 骨微调和骨骼菌株

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摘要

Implant loosening - commonly linked with elevated initial micromotion - is the primary indication for total ankle replacement (TAR) revision. Finite element modelling has not been used to assess micromodon of TAR implants; additionally, the biomechanical consequences of TAR malpositioning - previously linked with higher failure rates - remain unexplored. The aim of this study was to estimate implant-bone micromotion and peri-implant bone strains for optimally positioned and malpositioned TAR prostheses, and thereby identify fixation features and malpositioning scenarios increasing the risk of loosening. Finite element models simulating three of the most commonly used TAR devices (BOX (R), Mobility (R) and Salto (R)) implanted into the tibia/talus and subjected to physiological loads were developed. Mobility and Salto demonstrated the largest micromotion of all tibial and talar components, respectively. Any malpositioning of the implant creating a gap between it and the bone resulted in a considerable increase in micromotion and bone strains. It was concluded that better primary stability can be achieved through fixation nearer to the joint line and/or while relying on more than a single peg. Incomplete seating on the bone may result in considerably elevated implant-bone micromotion and bone strains, thereby increasing the risk for TAR failure. (C) 2017 The Authors. Published by Elsevier Ltd on behalf of IPEM.
机译:植入物放松 - 通常与初始微调升高 - 是总踝置换(焦油)修订的主要指示。有限元建模尚未用于评估焦油植入物的微生物;此外,焦油呈现的生物力学后果 - 以前与更高的失败率相关联 - 仍然是未开发的。本研究的目的是估计用于最佳定位和呈现的骨髓骨质菌株和呈现骨髓性焦油假体的植入物 - 骨髓骨株,从而识别固定特征和庭有素的情况,提高松动风险。开发了模拟植入胫骨/缩略图中的三种最常用的焦油装置(盒子(r),移动(r)和salto(r))并进行生理载荷的有限元模型。移动性和萨尔托分别证明了所有胫骨和缩略部件的最大微调。植入物的任何呈现植入物在其之间产生间隙,导致微调和骨骼菌株的相当大增加。结论是,通过更接近关节线的固定和/或依赖于多个佩格的固定可以实现更好的主要稳定性。骨骼上的不完全座位可能导致植入骨微调和骨菌株相当升高,从而提高了焦油失效的风险。 (c)2017作者。 elsevier有限公司代表IPEM发布。

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