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通过利用解剖学先验知识在树之间进行高效测地线追踪实现CTA冠状动脉标记

CTA coronary labeling through efficient geodesics between trees using anatomy priors.

作者信息

Gülsün Mehmet A, Funka-Lea Gareth, Zheng Yefeng, Eckert Matthias

出版信息

Med Image Comput Comput Assist Interv. 2014;17(Pt 2):521-8. doi: 10.1007/978-3-319-10470-6_65.

Abstract

We present an efficient realization of recent work on unique geodesic paths between tree shapes for the application of matching coronary arteries to a standard model of coronary anatomy in order to label the coronary arteries. Automatically labeled coronary arteries would speed reporting for physicians. The efficiency of the approach and the quality of the results are enhanced using the relative position of detected cardiac structures. We explain how to efficiently compute the geodesic paths between tree shapes using Dijkstra's algorithm and we present a methodology to account for missing side branches during matching. For nearly all labels our approach shows promise compared with recent work and we results for 8 additional labels.

摘要

我们展示了近期关于树形结构之间独特测地线的研究成果的高效实现,该成果用于将冠状动脉与冠状动脉解剖标准模型进行匹配,以便对冠状动脉进行标记。自动标记冠状动脉将加快医生的报告速度。利用检测到的心脏结构的相对位置,提高了该方法的效率和结果质量。我们解释了如何使用迪杰斯特拉算法有效地计算树形结构之间的测地线,并提出了一种在匹配过程中处理缺失侧支的方法。与近期工作相比,对于几乎所有的标签,我们的方法都显示出了前景,并且我们还给出了另外8个标签的结果。

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