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使用点分布模型和校准 X 射线图像重建患者特定 3D 骨骼表面模型的 2D/3D 对应构建方法。

A 2D/3D correspondence building method for reconstruction of a patient-specific 3D bone surface model using point distribution models and calibrated X-ray images.

机构信息

MEM Research Center, Institute for Surgical Technology and Biomechanics, University of Bern, Stauffacherstrasse 78, 3014 Bern, Switzerland.

出版信息

Med Image Anal. 2009 Dec;13(6):883-99. doi: 10.1016/j.media.2008.12.003. Epub 2008 Dec 24.

Abstract

Constructing a 3D bone surface model from a limited number of calibrated 2D X-ray images (e.g. 2) and a 3D point distribution model is a challenging task, especially, when we would like to construct a patient-specific surface model of a bone with pathology. One of the key steps for such a 2D/3D reconstruction is to establish correspondences between the 2D images and the 3D model. This paper presents a 2D/3D correspondence building method based on a non-rigid 2D point matching process, which iteratively uses a symmetric injective nearest-neighbor mapping operator and 2D thin-plate splines based deformations to find a fraction of best matched 2D point pairs between features extracted from the X-ray images and those extracted from the 3D model. The estimated point pairs are then used to set up a set of 3D point pairs such that we turn a 2D/3D reconstruction problem to a 3D/3D one, whose solutions are well studied. Incorporating this 2D/3D correspondence building method, a 2D/3D reconstruction scheme combining a statistical instantiation with a regularized shape deformation has been developed. Comprehensive experiments on clinical datasets and on images of cadaveric femurs with both non-pathologic and pathologic cases are designed and conducted to evaluate the performance of the 2D/3D correspondence building method as well as that of the 2D/3D reconstruction scheme. Quantitative and qualitative evaluation results are given, which demonstrate the validity of the present method and scheme.

摘要

从有限数量的校准二维 X 射线图像(例如 2 个)和三维点分布模型构建三维骨骼表面模型是一项具有挑战性的任务,特别是当我们希望构建具有病理学的骨骼的特定于患者的表面模型时。这种 2D/3D 重建的关键步骤之一是在二维图像和三维模型之间建立对应关系。本文提出了一种基于非刚性二维点匹配过程的 2D/3D 对应关系构建方法,该方法迭代使用对称的单射最近邻映射算子和基于二维薄板样条的变形,以找到从 X 射线图像中提取的特征与从三维模型中提取的特征之间最佳匹配的二维点对的一部分。然后,使用估计的点对来设置一组三维点对,从而将 2D/3D 重建问题转换为已充分研究的 3D/3D 问题。结合这种 2D/3D 对应关系构建方法,开发了一种结合统计实例化和正则化形状变形的 2D/3D 重建方案。设计并进行了针对临床数据集和具有非病理学和病理学病例的尸体股骨图像的综合实验,以评估 2D/3D 对应关系构建方法以及 2D/3D 重建方案的性能。给出了定量和定性评估结果,证明了本方法和方案的有效性。

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