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Finite element study for intra and postarthroplastic evaluation of ligament balancing in standing position using instrumented tibial baseplate

机译:使用仪表胫骨底板对韧带平衡韧带平衡的有限元研究

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To obtain a long lifespan of knee joint implant, it is indispensable to balance the collateral ligaments of the knee and to restore a correct alignment of the mechanical axis of the lower limb during total knee replacement (TKR). Nowadays, a proper mechanical axis alignment of the lower limb is guaranteed by computer assisted orthopaedic surgery (CAOS). To assure a symmetric laxity of these ligaments, a smart tibial baseplate instrumented with three strain gages could be used. Our objective is to study the displacement of the pressure center as a function of ligament balancing represented by the shift of resultant axial force exerted by the two condyles of the femoral component on the tibial tray. Improving the surgeon perception helps to solve the ligament balancing problem. Our first instrumented tibial baseplate has been modeled using ANSYS Workbench 11. As a result, soft tissue balance is possible to be assessed using the pressure center position. In this paper, we present our approach and the preliminary results of instrumented tibial plateau model which would be validated later by the first prototype.
机译:为了获得膝关节植入物的寿命长,可以平衡膝盖的侧支韧带并在总膝盖替换(TKR)期间恢复下肢的机械轴的正确对准。如今,通过计算机辅心矫形外科(CAOS)保证了下肢的适当机械轴对准。为了确保这些韧带的对称松弛,可以使用具有三个应变计的智能胫骨底板。我们的目的是研究压力中心的位移作为韧带平衡所示的韧带平衡,由胫骨上的股骨部件的两个髁突施加的所得轴向力的偏移表示。改善外科医生的感知有助于解决韧带平衡问题。我们的第一仪表胫骨基板已经使用ANSYS工作台11进行了建模。结果,可以使用压力中心位置进行软组织平衡。在本文中,我们介绍了我们的方法和仪器胫骨平台模型的初步结果,该模型将在后面的第一个原型核对。

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