首页> 外文期刊>The Open Biomedical Engineering Journal >The Reproducibility of a Kinematically-Derived Axis of the Knee versus Digitized Anatomical Landmarks using a Knee Navigation System
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The Reproducibility of a Kinematically-Derived Axis of the Knee versus Digitized Anatomical Landmarks using a Knee Navigation System

机译:使用膝关节导航系统的膝关节运动学轴与数字化解剖地标的可再现性

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Component position is critical to longevity of knee arthroplasties. Femoral component rotation is typically referenced from the transepicondylar axis (TEA), the anterior-posterior (AP) axis or the posterior condylar axis. Other studies have shown high variability in locating the TEA while proposing digitization of other landmarks such as the AP axis as a less-variable reference. This study uses a navigation system to compare the reproducibility of computing a kinematically-derived, navigated knee axis (NKA) to digitizing the TEA and AP axis. Twelve knees from unembalmed cadavers were tested. Four arthroplasty surgeons digitized the femoral epicondyles and the AP axis direction as well as flexed and extended the knee repeatedly to allow for NKA determination. The variance of the NKA axis determined under neutral loading conditions was smaller than the variance of the TEA axis when the kinematics were measured in the closed surgical condition (P<0.001). However, varus, valgus, and internal loading of the leg increased the variability of the NKA. Distraction of the leg during knee flexion and extension preserved the low variability of the NKA. In conclusion, a kinematically-derived NKA under neutral or distraction loading is more reproducible than the TEA and AP axis determined by digitization.
机译:组件位置对于延长膝关节置换术的寿命至关重要。股骨组件旋转通常从ep上轴(TEA),前后(AP)轴或con后轴参考。其他研究表明,在定位TEA时存在很大的可变性,同时建议将其他界标(例如AP轴)的数字化作为不变的参考。这项研究使用导航系统来比较计算运动学派生的导航膝盖轴(NKA)来数字化TEA和AP轴的可重复性。测试了来自无支腿尸体的十二个膝盖。四个关节成形术外科医生将股骨上con和AP轴方向数字化,并反复弯曲和伸展膝盖以进行NKA测定。在封闭手术条件下测量运动学时,在中性载荷条件下确定的NKA轴方差小于TEA轴的方差(P <0.001)。但是,内翻,外翻和腿的内部负荷增加了NKA的变异性。膝盖弯曲和伸展过程中腿的分心保留了NKA的低变异性。总之,在运动或中性负荷下的运动学NKA比通过数字化确定的TEA和AP轴更可重现。

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