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基于区域的人体气道和动脉血管的几何建模。

Region-based geometric modelling of human airways and arterial vessels.

机构信息

RMIT University, Victoria, Australia.

出版信息

Comput Med Imaging Graph. 2010 Mar;34(2):114-21. doi: 10.1016/j.compmedimag.2009.07.005. Epub 2009 Aug 15.

Abstract

Anatomically precise geometric models of human airways and arterial vessels play a critical role in the analysis of air and blood flows in human bodies. The established geometric modelling methods become invalid when the model consists of bronchioles or small vessels. This paper presents a new method for reconstructing the entire airway tree and carotid vessels from point clouds obtained from CT or MR images. A novel layer-by-layer searching algorithm has been developed to recognize branches of the airway tree and arterial vessels from the point clouds. Instead of applying uniform accuracy to all branches regardless of the number of available points, the surface patches on each branch are constructed adaptively based on the number of available elemental points, which leads to the elimination of distortions occurring at small bronchi and vessels.

摘要

人体气道和动脉血管的解剖精确几何模型在分析人体中的空气和血流方面起着至关重要的作用。当模型由细支气管或小血管组成时,已建立的几何建模方法将失效。本文提出了一种从 CT 或 MR 图像获得的点云中重建整个气道树和颈动脉的新方法。开发了一种新颖的逐层搜索算法,用于从点云中识别气道树和动脉血管的分支。该方法不是对所有分支应用统一的精度,而不管可用点数多少,而是根据可用元素点数自适应地构建每个分支上的曲面补丁,从而消除了在小支气管和小血管中出现的失真。

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