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Automated Preoperative Planning of Femoral Component for Total Hip Arthroplasty (THA) from 3D CT Images

机译:从3D CT图像进行全髋关节置换术(THA)的股骨组件自动化术前计划

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摘要

This paper describes a method for 3D automated preoperative planning of the femoral stem in total hip arthroplasty (THA). The stem planning is formulated as a problem to determine the optimal position, rotation, and size, on the 3D surface model of femur reconstructed from CT images. We obtain the parameters that maximize the fitness between the femoral canal and stem surfaces subject to the positional and rotational constraints. The maximization is performed by local optimization from multiple initial positions. The proposed method was experimentally evaluated by the difference from planning results of an experienced surgeon in 7 cases. The average positional and rotational differences were 1.9 mm and 2.5 deg., respectively, and there was size difference only in 1 case for the proposed method while these differences were 2.8 mm, 5.0 deg., and 5 cases for an existing method. The proposed method showed better performance than the existing method.
机译:本文介绍了一种用于全髋关节置换术(THA)中股骨柄的3D自动化术前计划的方法。根据从CT图像重建的股骨3D表面模型,将茎计划公式化为确定最佳位置,旋转和大小的问题。我们获得了在位置和旋转约束下最大程度地提高股骨管和茎干表面之间适应性的参数。通过从多个初始位置进行局部优化来执行最大化。通过与7位经验丰富的外科医生的计划结果的差异,对所提出的方法进行了实验评估。平均位置差和旋转差分别为1.9 mm和2.5度,所建议的方法仅在1种情况下存在尺寸差,而现有方法的这些差在2.8 mm,5.0度和5种情况下。所提出的方法表现出比现有方法更好的性能。

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