首页> 外文期刊>The Journal of arthroplasty >No Differences Identified in Transverse Plane Biomechanics Between Medial Pivot and Rotating Platform Total Knee Implant Designs
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No Differences Identified in Transverse Plane Biomechanics Between Medial Pivot and Rotating Platform Total Knee Implant Designs

机译:中间枢轴和旋转平台全膝关节植入物设计之间的横向平面生物力学没有差异

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摘要

Background: Total knee arthroplasties (TKAs) using well-designed, fixed bearing prostheses, such as medial pivot (MP), have produced good long-term results. Rotating-platform, posterior-stabilized (RP-PS) mobile bearing implants were designed to decrease polyethylene wear. Sagittal and coronal plane TKA biomechanics are well examined and correlated to polyethylene wear. However, limited research findings describe this relationship in transverse plane. We assumed that although axial plane biomechanics might not be the most destructive parameters on polyethylene wear, it is important to clarify their role because both joint kinematics and kinetics in all 3 planes are important input parameters for TKA wear testing (International Organization for Standardization 14243-1 and 14343-3). Our hypothesis was that transverse plane overall range of motion (ROM) and/or peak moment show differences that reflect on wear advantages when compared RP-PS implants to MP designs.
机译:背景:采用精心设计的固定式支撑假体(例如内侧枢轴(MP))的全膝关节置换术(TKA)取得了良好的长期效果。旋转平台后稳定(RP-PS)移动轴承植入物旨在减少聚乙烯磨损。矢状和冠状平面TKA生物力学已得到很好的检查,并与聚乙烯磨损相关。但是,有限的研究发现在横向平面上描述了这种关系。我们假设尽管轴向平面生物力学可能不是聚乙烯磨损的最具破坏性的参数,但阐明它们的作用很重要,因为在所有三个平面上的联合运动学和动力学都是TKA磨损测试的重要输入参数(国际标准化组织14243- 1和14343-3)。我们的假设是,当将RP-PS植入物与MP设计进行比较时,横切面的整体运动范围(ROM)和/或峰值力矩显示出差异,反映出磨损优势。

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