首页> 外文OA文献 >Effect of Post-Cam Design for Normal Knee Joint Kinematic, Ligament, and Quadriceps Force in Patient-Specific Posterior-Stabilized Total Knee Arthroplasty by Using Finite Element Analysis
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Effect of Post-Cam Design for Normal Knee Joint Kinematic, Ligament, and Quadriceps Force in Patient-Specific Posterior-Stabilized Total Knee Arthroplasty by Using Finite Element Analysis

机译:凸起对颞膝关节运动,韧带和Quadriceps力的凸起设计效果通过使用有限元分析方法特定于患者特异性后稳定总膝关节置换术的影响

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摘要

The purpose of this study is to investigate post-cam design via finite element analysis to evaluate the most normal-like knee mechanics. We developed five different three-dimensional computational models of customized posterior-stabilized (PS) total knee arthroplasty (TKA) involving identical surfaces with the exception of the post-cam geometry. They include flat-and-flat, curve-and-curve (concave), curve-and-curve (concave and convex), helical, and asymmetrical post-cam designs. We compared the kinematics, collateral ligament force, and quadriceps force in the customized PS-TKA with five different post-cam designs and conventional PS-TKA to those of a normal knee under deep-knee-bend conditions. The results indicated that femoral rollback in curve-and-curve (concave) post-cam design exhibited the most normal-like knee kinematics, although the internal rotation was the closest to that of a normal knee in the helical post-cam design. The curve-and-curve (concave) post-cam design showed a femoral rollback of 4.4 mm less than the normal knee, and the helical post-cam design showed an internal rotation of 5.6° less than the normal knee. Lateral collateral ligament and quadriceps forces in curve-and-curve (concave) post-cam design, and medial collateral ligament forces in helical post-cam design were the closest to that of a normal knee. The curve-and-curve (concave) post-cam design showed 20% greater lateral collateral ligament force than normal knee, and helical post-cam design showed medial collateral ligament force 14% greater than normal knee. The results revealed the variation in each design that provided the most normal-like biomechanical effect. The present biomechanical data are expected to provide useful information to improve post-cam design to restore normal-like knee mechanics in customized PS-TKA.
机译:本研究的目的是通过有限元分析来调查凸轮设计,以评估最正常的膝部力学。我们开发了五种不同的三维计算模型的定制后稳定(PS)总膝盖关节置换术(TKA),涉及凸轮几何形状的异形表面。它们包括平坦,曲线和曲线(凹形),曲线和曲线(凹凸和凸形),螺旋和不对称的凸轮设计。我们将运动学,抵押韧带力和Quadriceps力进行比较,在定制的PS-TKA中用五种不同的凸轮设计和传统的PS-TKA到深膝弯曲条件下的正常膝关节。结果表明,曲线和曲线(凹面)后凸轮设计中的股骨回滚显示出最正常的膝盖运动学,尽管内部旋转是螺旋后凸轮设计中普通膝关节的最接近普通膝关节的膝关节运动学。曲线和曲线(凹面)凸轮设计显示股骨回滚小于普通膝关节4.4毫米,螺旋后凸轮设计显示出比普通膝关节小5.6°的内部旋转。曲线和曲线(凹面上的凸起凸形韧带和Quadriceps力和凸轮式凸轮设计中的内侧侧韧带力最接近普通膝关节。曲线和曲线(凹面)凸轮设计表现出比普通膝盖更高的横向侧侧韧带力,螺旋后凸起设计表现出内侧副韧带力比普通膝关节大14%。结果显示了每个设计的变化,提供了最正常的生物力学效果。目前的生物力学数据有望提供有用的信息,以改善凸轮后设计,以恢复定制的PS-TKA中的正常膝关系。

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