首页> 外文期刊>Journal of biomechanical engineering. >Errors in Calculating Anterior-Posterior Tibial Contact Locations in Total Knee Arthroplasty Using Three-Dimensional Model to Two-Dimensional Image Registration in Radiographs: An In Vitro Study of Two Methods
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Errors in Calculating Anterior-Posterior Tibial Contact Locations in Total Knee Arthroplasty Using Three-Dimensional Model to Two-Dimensional Image Registration in Radiographs: An In Vitro Study of Two Methods

机译:用三维模型计算全膝关节成形术中的前后胫骨成形术中的前胫骨侧胫骨插孔位置的误差:两种方法的二维图像配准:两种方法的体外研究

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摘要

Knowledge of anterior-posterior (A-P) tibial contact locations provides an objective assessment of the relative motion of the tibia on the femur following total knee arthroplasty (TKA), which can be used to compare the effects of different components, surgical techniques, and alignment goals on knee function in vivo. Both the lowest point method and the penetration method have been used to calculate A-P tibial contact locations using three-dimensional (3D) model to two-dimensional (2D) image registration. The primary objective of this study was to quantify errors in calculating the A-P tibial contact location using the lowest point and penetration methods because the errors in calculating the A-P tibial contact locations using these two methods are unknown. The A-P tibial contact locations were calculated with the two methods and simultaneously measured with a tibial force sensor in ten fresh-frozen cadaveric knee specimens with a TKA. Single-plane radiographs of the knee specimens were acquired at 0 deg, 30 deg, 60 deg, and 90 deg of flexion in neutrally, internally, and externally rotated orientations. While the radiographs were exposed, reference A-P tibial contact locations were simultaneously collected using the tibial force sensor to be compared to the calculated A-P tibial contact locations. The overall root-mean-squared-errors (RMSEs) in the A-P tibial contact location calculated with the lowest point method, the penetration method with penetration, and penetration method without penetration were 5.5 mm, 3.6 mm, and 8.9 mm, respectively. The overall RMSE was lowest for the penetration method with penetration, making it the superior method for calculating A-P tibial contact locations.
机译:关于前后(AP)胫骨接触位置的知识为胫骨成形术(TKA)进行了对胫骨上胫骨的相对运动的客观评估,可用于比较不同组分,手术技术和对准的影响在体内膝关节功能的目标。最低点方法和穿透方法都已用于使用三维(3D)模型来计算A-P胫骨接触位置到二维(2D)图像配准。本研究的主要目的是使用最低点和穿透方法量化计算A-P胫骨接触位置的误差,因为使用这两种方法计算A-P胫骨接触位置的误差是未知的。使用两种方法计算A-P胫骨接触位置,并在具有TKA的十个新鲜冷冻的尸体膝关节标本中与胫骨力传感器同时测量。膝关节标本的单平面X光片在0℃,30℃,60℃和90℃,内部和外部旋转方向上的0℃。虽然射线照相曝光,但是使用胫骨力传感器同时收集参考A-P胫骨接触位置,以与计算的A-P胫骨接触位置进行比较。用最低点法计算的A-P胫骨接触位置中的整体根均方向误差(RMSE),具有渗透的渗透方法和不穿透的穿透方法分别为5.5毫米,3.6毫米和8.9毫米。渗透方法的整体RMSE是最低的,具有穿透方法,使其成为计算A-P胫骨接触位置的优越方法。

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