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首页> 外文期刊>Medical image analysis >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.
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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.

机译:一种2D / 3D对应关系建立方法,用于使用点分布模型和校准的X射线图像重建患者特定的3D骨表面模型。

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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.
机译:从有限数量的已校准2D X射线图像(例如2张)和3D点分布模型构建3D骨表面模型是一项艰巨的任务,尤其是当我们希望使用以下方法构建患者特定的骨表面模型时:病理。这种2D / 3D重建的关键步骤之一是在2D图像和3D模型之间建立对应关系。本文提出了一种基于非刚性2D点匹配过程的2D / 3D对应建立方法,该方法迭代地使用对称注入最近邻映射算子和基于2D薄板样条的变形来找到一部分最佳匹配的2D点对在从X射线图像提取的特征和从3D模型提取的特征之间。然后,将估计的点对用于建立一组3D点对,以便我们将2D / 3D重构问题转变为3D / 3D问题,并对其解决方案进行了深入研究。结合这种2D / 3D对应构建方法,已经开发了将统计实例化与规则形状变形结合在一起的2D / 3D重建方案。设计并进行了具有非病理性和病理性病例的尸体股骨临床数据集和图像的综合实验,以评估2D / 3D对应构建方法以及2D / 3D重建方案的性能。给出了定性和定量的评价结果​​,证明了本方法和方案的有效性。

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