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A three-dimensional model of the human airway tree: application for airway-parenchymal interaction

机译:人气道树的三维模型:气道实心互动的应用

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A three-dimensional (3D) model of the human airway tree is proposed based on a deterministic algorithm that can generate a branching duct system in an organ. The algorithm based on two principles: 1) the amount of fluid delivery through a branchis proportional to the volume of the region supplied by the branch; and 2) the terminal branches are arranged homogeneously within the organ. These principles define the basic process of branching: the generation of the dimensions and directionality ofthe two daughter branches is governed by the properties of the parent branch and the region the parent supplies. The algorithm is composed of nine basic nines and four complementary rules. When the contour of an organ and the position of the trunk arespecified, branches are successively generated by the algorithm. Applied to the human lung, the algorithm generates a 3D airway tree which consists of about 54,000 branches. The tree is a fractal structure and its morphometric characteristics of the model are in good agreement with those reported in the literature. The algorithm and the 3D airway model are useful for studying structure-function relationship in the lung such as airway-parenchymal interaction and simulated CT imaging.
机译:基于确定性算法提出了人类气道树的三维(3D)模型,其可以在器官中产生分支管道系统。基于两个原则的算法:1)通过与分支供应的区域的体积成比例的分支的流体输送量; 2)端子分支在器官内均匀地布置。这些原则定义了分支的基本过程:两个子分支的尺寸和方向性的生成由父分支的属性和父耗材的区域来控制。该算法由九个基本九和四个互补规则组成。当器官的轮廓和中继的位置被禁止时,分支由算法连续生成。应用于人肺,该算法生成3D气道树,由大约54,000个分支组成。树是一种分形结构,其模型的形态学特征与文献中报道的那些吻合良好。该算法和3D气道模型可用于研究肺中的结构功能关系,例如气道实心相互作用和模拟CT成像。

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