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A novel multipurpose tree and path matching algorithm with application to airway trees

机译:一种新型多用途树和路径匹配算法,应用于气道树

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Tree matching methods have numerous applications in medical imaging, including registration, anatomical labeling, segmentation, and navigation of structures such as vessels and airway trees. Typical methods for tree matching rely on conventional graph matching techniques and therefore suffer potential limitations such as sensitivity to the accuracy of the extracted tree structures, as well as dependence on the initial alignment. We present a novel path-based tree matching framework independent of graph matching. It is based on a point-by-point feature comparison of complete paths rather than branch points, and consequently is relatively unaffected by spurious airways and/or missing branches. A matching matrix is used to enforce one-to-one matching. Moreover our method can reliably match irregular tree structures, resulting from imperfect segmentation and centerline extraction. Also reflecting the nature of these features, our method does not require a precise alignment or registration of tree structures. To test our method we used two thoracic CT scans from each of ten patients, with a median inter-scan interval of 3 months (range 0.5 to 10 months). The bronchial tree structure was automatically extracted from each scan and a ground truth of matching paths was established between each pair of tree structures. Overall 87% of 702 airway paths (average 35.1 per patient matched both ways) were correctly matched using this technique. Based on this success we also present preliminary results of airway-to-artery matching using our proposed methodology.
机译:树匹配方法在医学成像中具有许多应用,包括船舶和气道树等结构的登记,解剖标记,分割和导航。树匹配的典型方法依赖于传统的图形匹配技术,因此遭受潜在的限制,例如对提取的树结构的精度的敏感性,以及对初始对准的依赖性。我们提出了一种独立于图形匹配的新型路径的树匹配框架。它基于完整路径而不是分支点的点对点特征比较,因此由寄生气道和/或丢失的分支相对不受影响。匹配矩阵用于强制执行一对一匹配。此外,我们的方法可以可靠地匹配不正常的树木结构,由不完善的分割和中心线提取产生。还反映了这些特征的性质,我们的方法不需要精确的对准或树木结构的登记。为了测试我们的方法,我们使用10名患者中的每一个的两个胸CT扫描,中位间扫描间隔3个月(范围为0.5至10个月)。支气管树结构自动从每个扫描中提取,并且在每对树结构之间建立匹配路径的地面真实。总共87%的702个气道路径(平均每位患者匹配两种方式的35.1)使用这种技术正确匹配。基于这一成功,我们还使用我们提出的方法来提出气道对动脉匹配的初步结果。

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