Branching design of the bronchial tree based on a diameter-flow relationship
- 1 March 1997
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 82 (3) , 968-976
- https://doi.org/10.1152/jappl.1997.82.3.968
Abstract
Kitaoka, Hiroko, and Béla Suki. Branching design of the bronchial tree based on a diameter-flow relationship. J. Appl. Physiol. 82(3): 968–976, 1997.—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 ∼ d n, where n is the diameter exponent. The value of n has been suggested to be ∼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 ∼ d n since P(>Q) ∼ 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.Keywords
This publication has 33 references indexed in Scilit:
- Diameter-defined Strahler system and connectivity matrix of the pulmonary arterial treeJournal of Applied Physiology, 1994
- A hemodynamic model representation of the dog lungJournal of Applied Physiology, 1991
- Fractal properties of pulmonary blood flow: characterization of spatial heterogeneityJournal of Applied Physiology, 1990
- Science in Pictures: Chaos and Fractals in Human PhysiologyScientific American, 1990
- Diameters and cross‐sectional areas of branches in the human pulmonary arterial treeThe Anatomical Record, 1989
- Analysis of human lung morphometric data for stochastic aerosol deposition calculationsPhysics in Medicine & Biology, 1985
- Relation between diameter and flow in branches of the bronchial treeBulletin of Mathematical Biology, 1981
- Mechanical Response of the Lungs at High FrequenciesJournal of Biomechanical Engineering, 1978
- Theoretical relationship between the optimal models of the vascular treeBulletin of Mathematical Biology, 1974
- Peripheral Bronchographic Morphology in the Normal Human LungInvestigative Radiology, 1971