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基于直径-流量关系的支气管树分支设计。

Branching design of the bronchial tree based on a diameter-flow relationship.

作者信息

Kitaoka H, Suki B

机构信息

Department of Biomedical Engineering, Boston University, Massachusetts 02215, USA.

出版信息

J Appl Physiol (1985). 1997 Mar;82(3):968-76. doi: 10.1152/jappl.1997.82.3.968.

Abstract

We propose a method for designing the bronchial tree where the branching process is stochastic and the diameter (d) of a branch is determined by its flow rate (Q). We use two principles: the continuum equation for flow division and a power-law relationship between d and Q, given by Q approximately dn, where n is the diameter exponent. The value of n has been suggested to be approximately 3. We assume that flow is divided iteratively with a random variable for the flow-division ratio, defined as the ratio of flow in the branch to that in its parent branch. We show that the cumulative probability distribution function of Q, P(> Q) is proportional to Q-1. We analyzed prior morphometric airway data (O. G. Raabe, H. C. Yeh, H. M. Schum, and R. F. Phalen, Report No. LF-53, 1976) and found that the cumulative probability distribution function of diameters, P(> d), is proportional to d-n, which supports the validity of Q approximately dn since P(> Q) approximately Q-1. This allowed us to assign diameters to the segments of the flow-branching pattern. We modeled the bronchial trees of four mammals and found that their statistical features were in good accordance with the morphometric data. We conclude that our design method is appropriate for robust generation of bronchial tree models.

摘要

我们提出了一种设计支气管树的方法,其中分支过程是随机的,分支的直径(d)由其流量(Q)决定。我们使用两个原理:流量分配的连续方程以及d和Q之间的幂律关系,由Q近似于d^n给出,其中n是直径指数。有人提出n的值约为3。我们假设流量通过一个流量分配比的随机变量进行迭代分配,流量分配比定义为分支中的流量与其父分支中的流量之比。我们表明Q的累积概率分布函数P(> Q)与Q^(-1)成正比。我们分析了先前的形态学气道数据(O.G.拉贝、H.C.叶、H.M.舒姆和R.F.法伦,报告编号LF - 53,1976),发现直径的累积概率分布函数P(> d)与d^(-n)成正比,这支持了Q近似于d^n的有效性,因为P(> Q)近似于Q^(-1)。这使我们能够为流量分支模式的各段分配直径。我们对四种哺乳动物的支气管树进行了建模,发现它们的统计特征与形态学数据高度吻合。我们得出结论,我们的设计方法适用于稳健地生成支气管树模型。

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