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Assessment of the 3-D reconstruction and high-resolution geometrical modeling of the human skeletal trunk from 2-D radiographic images

机译:从二维放射线图像评估人体骨骼的3D重建和高分辨率几何建模

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摘要

This paper presents an in vivo validation of a method for the three-dimensional (3-D) high-resolution modeling of the human spine, rib cage, and pelvis for the study of spinal deformities. The method uses an adaptation of a standard close-range photogrammetry method called direct linear transformation to reconstruct the 3-D coordinates of anatomical landmarks from three radiographic images of the subject's trunk. It then deforms in 3-D 1-mm-resolution anatomical primitives (reference bones) obtained by serial computed tomography-scan reconstruction of a dry specimen. The free-form deformation is calculated using dual kriging equations. In vivo validation of this method on 40 scoliotic vertebrae gives an overall accuracy of 3.3 /spl plusmn/ 3.8 mm, making it an adequate tool for clinical studies and mechanical analysis purposes.
机译:本文介绍了一种用于人体脊柱,肋骨笼和骨盆的三维(3-D)高分辨率建模方法的体内验证,用于研究脊柱畸形。该方法使用称为直接线性变换的标准近距离摄影测量方法的改编,以从受试者躯干的三张放射线图像中重建解剖标志的3-D坐标。然后将其变形,该分辨率是通过对干标本进行串行计算机断层扫描扫描重建而获得的3D 1mm分辨率的解剖图元(参考骨骼)。使用双克里金方程计算自由形式的变形。在40个脊柱侧凸椎体上进行此方法的体内验证,其总体准确度为3.3 / spl plusmn / 3.8 mm,使其成为用于临床研究和力学分析的适当工具。

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