首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Tibiofemoral conformity variation offers changed kinematics and wear performance of customized posterior-stabilized total knee arthroplasty
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Tibiofemoral conformity variation offers changed kinematics and wear performance of customized posterior-stabilized total knee arthroplasty

机译:TibioFoMoral符合性变化提供了改变的运动学和磨损性能的定制后稳定的全膝关节置换术

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PurposePosterior-stabilized (PS)-total knee arthroplasty (TKA) can be applied in any of several variations in terms of the tibiofemoral conformity and post-cam mechanism. However, previous studies have not evaluated the effect of the condylar surface radii (tibiofemoral conformity) on wear in a customized PS-TKA. The present study involved evaluating the wear performance with respect to three different conformities of the tibiofemoral articular surface in a customized PS-TKA by means of a computational simulation.MethodsAn adaptive computational simulation method was developed that conduct wear simulation for tibial insert to predict kinematics, weight loss due to wear, and wear contours to results. Wear predictions using computational simulation were performed for 5million gait cycles with force-controlled inputs. Customized PS-TKA designs were developed and categorized as conventional conformity (CPS-TKA), medial pivot conformity (MPS-TKA), and anatomical conformity (APS-TKA). The post-cam design in the customized PS-TKA is identical. We compared the kinematics, contact mechanics, and wear performance.ResultsThe findings revealed that APS-TKA exhibited the highest internal tibial rotation relative to other TKA designs. Additionally, the higher contact area led to there being less contact stress although it did not directly affect the wear performance. Specifically, MPS-TKA exhibited the lowest volumetric wear.ConclusionsThe results of the present study showed that tibiofemoral articular surface conformity should be considered carefully in customized PS-TKA design. Different wear performances were observed with respect to different tibiofemoral conformities. Even though APS-TKA exhibited an inferior wear performance compared to MPS-TKA, it proved to be better in terms of kinematics so its functionality may be improved through the optimization of the tibiofemoral articular surface conformity. Additionally, it should be carefully designed since any changes may affect the post-cam mechanism.
机译:目的末端稳定(PS) - 膝关节置换术(TKA)可以应用于胫芯符合性和凸轮机构的几种变化中。然而,先前的研究没有评估髁表面半径(胫骨表面符合性)在定制的PS-TKA中磨损的影响。本研究涉及通过计算仿真在定制的PS-TKA中评估相对于三种不同符合性的胫甲仪关节表面的三种不同符合性。通过计算仿真,开发了一种用于预测运动学的磨损仿真来进行磨损模拟,以预测运动学,减肥由于磨损,磨损轮廓的效果。使用计算机模拟预测的磨损与力控制输入500万个步态周期进行。根据传统的符合性(CPS-TKA),内侧枢转符合性(MPS-TKA)和解剖结构(APS-TKA)进行定制和分类为传统符合性(CPS-TKA)。定制PS-TKA中的凸轮后设计是相同的。我们比较了运动学,接触力学和佩戴性能。结果表明,APS-TKA相对于其他TKA设计表现出最高的内部胫骨旋转。另外,较高接触面积导致较少的接触应力,尽管它没有直接影响磨损性能。具体地,MPS-TKA表现出最低的体积磨损。本研究的结果表明,应在定制的PS-TKA设计中仔细考虑胫镜关节表面符合性。对于不同的胫符合项,观察不同的磨损性能。即使APS-TKA表现出相比于MPS-TKA较差的磨损性能,它被证明是更好的在运动学方面所以其功能可以通过胫股骨关节表面的一致的优化来改进。此外,应精心设计,因为任何改变可能会影响到后凸轮机构。

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