首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Geometric variable designs of cam/post mechanisms influence the kinematics of knee implants
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Geometric variable designs of cam/post mechanisms influence the kinematics of knee implants

机译:凸轮/支柱机构的几何可变设计影响膝关节植入物的运动学

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Purpose: Reproducing the femoral rollback through specially designed mechanism in knee implants is required to achieve full knee function in total knee arthroplasty. Most contemporary implants use cam/post mechanism to replace the function of Posterior Cruciate Ligament. This study was aimed to determine the most appropriate cam and post designs to produce normal femoral rollback of the knee.Methods: Three different cams (triangle, ellipse, and circle) and three different posts (straight, convex, concave) geometries were considered in this study and were analysed using kinematic analyses. Femoral rollback did not occur until reaching 50° of knee flexion. Beyond this angle, two of the nine combinations demonstrate poor knee flexion and were eliminated from the study.Results: The combination of circle cam with concave post, straight post and convex post showed 15.6, 15.9 and 16.1 mm posterior translation of the femur, respectively. The use of ellipse cam with convex post and straight post demonstrated a 15.3 and 14.9 mm femoral rollback, whilst the combination of triangle cam with convex post and straight post showed 16.1 and 15.8 mm femoral rollback, respectively.Conclusion: The present study demonstrates that the use of circle cam and convex post created the best femoral rollback effect which in turn produces the highest amount of knee flexion. The findings of the study suggest that if the design is applied for knee implants, superior knee flexion may be possible for future patients.Level of evidence: IV.
机译:目的:通过特殊设计的机制在膝关节植入物中复制股骨回滚是实现全膝关节置换术中充分的膝关节功能所必需的。大多数当代植入物使用凸轮/支柱机制来代替后十字韧带的功能。这项研究的目的是确定最合适的凸轮和接骨设计,以产生正常的膝盖股骨回滚。方法:考虑了三种不同的凸轮(三角形,椭圆形和圆形)和三种不同的接杆(直形,凸形,凹形)几何形状。本研究并使用运动学分析进行了分析。直到膝盖弯曲50°才发生股骨回滚。结果:圆凸轮与凹柱,直柱和凸柱的组合分别显示了股骨后移15.6、15.9和16.1 mm 。椭圆形凸轮与凸柱和直柱结合使用可显示15.3和14.9 mm的股骨回滚,而三角凸轮与凸柱和直柱结合使用可分别显示16.1和15.8 mm的股骨回滚。结论:本研究表明使用圆形凸轮和凸柱可产生最佳的股骨回滚效果,进而产生最大的膝盖屈曲度。研究结果表明,如果该设计用于膝关节植入物,将来的患者可能会屈膝屈曲。

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