首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention(MICCAI 2007) pt.1; 20071029-1102; Brisbane(AU) >Unsupervised Reconstruction of a Patient-Specific Surface Model of a Proximal Femur from Calibrated Fluoroscopic Images
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Unsupervised Reconstruction of a Patient-Specific Surface Model of a Proximal Femur from Calibrated Fluoroscopic Images

机译:从校准的荧光镜图像无监督重建患者股骨近端特定表面模型

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摘要

In this paper, we present an unsupervised 2D/3D reconstruction scheme combining a parameterized multiple-component geometrical model and a point distribution model, and show its application to automatically reconstruct a surface model of a proximal femur from a limited number of calibrated fluoroscopic images with no user intervention at all. The parameterized multiple-component geometrical model is regarded as a simplified description capturing the geometrical features of a proximal femur. Its parameters are optimally and automatically estimated from the input images using a particle filter based inference method. The estimated geometrical parameters are then used to initialize a point distribution model based 2D/3D reconstruction scheme for an accurate reconstruction of a surface model of the proximal femur. We designed and conducted in vitro and in vivo experiments to compare the present unsupervised reconstruction scheme to a supervised one. An average mean error of 1.2 mm was found when the supervised reconstruction scheme was used. It increased to 1.3 mm when the unsupervised one was used. However, the unsupervised reconstruction scheme has the advantage of elimination of user intervention, which holds the potential to facilitate the application of the 2D/3D reconstruction in surgical navigation.
机译:在本文中,我们提出了一种无监督的2D / 3D重建方案,该方案结合了参数化的多分量几何模型和点分布模型,并展示了其在有限数量的经校准的透视图像中自动重建股骨近端表面模型的应用。完全无需用户干预。参数化的多分量几何模型被视为捕获近端股骨几何特征的简化描述。使用基于粒子滤波器的推理方法,可以从输入图像中自动,最佳地估计其参数。然后,将估计的几何参数用于初始化基于点分布模型的2D / 3D重建方案,以精确重建股骨近端的表面模型。我们设计并进行了体外和体内实验,以比较当前的无监督重建方案与有监督的重建方案。当使用监督重建方案时,发现平均平均误差为1.2 mm。当使用无人监督时,它增加到1.3毫米。然而,无监督的重建方案具有消除用户干预的优点,这具有促进2D / 3D重建在手术导航中的应用的潜力。

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