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首页> 外文期刊>Journal of Biomechanics >Automatic determination of anatomical coordinate systems for three-dimensional bone models of the isolated human knee.
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Automatic determination of anatomical coordinate systems for three-dimensional bone models of the isolated human knee.

机译:自动确定孤立的人类膝盖的三维骨骼模型的解剖坐标系。

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摘要

The combination of three-dimensional (3-D) models with dual fluoroscopy is increasingly popular for evaluating joint function in vivo. Applying these modalities to study knee motion with high accuracy requires reliable anatomical coordinate systems (ACSs) for the femur and tibia. Therefore, a robust method for creating ACSs from 3-D models of the femur and tibia is required. We present and evaluate an automated method for constructing ACSs for the distal femur and proximal tibia based solely on 3-D bone models. The algorithm requires no observer interactions and uses model cross-sectional area, center of mass, principal axes of inertia, and cylindrical surface fitting to construct the ACSs. The algorithm was applied to the femur and tibia of 10 (unpaired) human cadaveric knees. Due to the automated nature of the algorithm, the within specimen variability is zero for a given bone model. The algorithm's repeatability was evaluated by calculating variability in ACS location and orientation across specimens. Differences in ACS location and orientation between specimens were low (<1.5mm and <2.5 degrees). Variability arose primarily from natural anatomical and morphological differences between specimens. The presented algorithm provides an alternative method for automatically determining subject-specific ACSs from the distal femur and proximal tibia.
机译:三维(3-D)模型与双重荧光检查法的结合在评估体内关节功能方面越来越受欢迎。应用这些方法来高精度地研究膝关节运动需要可靠的股骨和胫骨解剖坐标系(ACSs)。因此,需要一种可靠的方法来从股骨和胫骨的3-D模型创建ACS。我们提出并评估仅基于3-D骨模型为远端股骨和胫骨近端构建ACS的自动化方法。该算法不需要观察者的交互,并使用模型的横截面积,质心,惯性主轴和圆柱表面拟合来构建ACS。该算法已应用于10个(未配对的)人尸体膝盖的股骨和胫骨。由于算法的自动性质,对于给定的骨骼模型,样本内变异性为零。通过计算整个样本的ACS位置和方向的变异性来评估算法的可重复性。标本之间的ACS位置和方向差异很小(<1.5mm和<2.5度)。差异主要来自标本之间的自然解剖和形态差异。提出的算法提供了一种从股骨远端和胫骨近端自动确定受试者特定ACS的替代方法。

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