Generation of Pig Airways using Rules Developed from the Measurements of Physical Airways.

Md Khurshidul Azad, Hansen A Mansy
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引用次数: 4

Abstract

BACKGROUND A method for generating bronchial tree would be helpful when constructing models of the tree for benchtop experiments as well as for numerical modeling of flow or sound propagation in the airways. Early studies documented the geometric details of the human airways that were used to develop methods for generating human airway tree. However, methods for generating animal airway tree are scarcer. Earlier studies suggested that the morphology of animal airways can be significantly different from that of humans. Hence, using algorithms for the human airways may not be accurate in generating models of animal airway geometry. OBJECTIVE The objective of this study is to develop an algorithm for generating pig airway tree based on the geometric details extracted from the physical measurements. METHODS In the current study, measured values of branch diameters, lengths and bifurcation angles and rotation of bifurcating planes were used to develop an algorithm that is capable of generating a realistic pig airway tree. RESULTS The generation relations between parent and daughter branches were found to follow certain trends. The diameters and the length of different branches were dependent on airway generations while the bifurcation angles were primarily dependent on bifurcation plane rotations. These relations were sufficient to develop rules for generating a model of the pig large airways. CONCLUSION The results suggested that the airway tree generated from the algorithm can provide an approximate geometric model of pig airways for computational and benchtop studies.

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Abstract Image

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利用物理气道测量发展的规则生成猪气道。
背景:一种生成支气管树的方法将有助于构建用于台式实验的支气管树模型以及气道内流动或声音传播的数值模拟。早期的研究记录了人体气道的几何细节,用于开发生成人体气道树的方法。然而,动物气道树的生成方法较少。早期的研究表明,动物气道的形态可能与人类有很大的不同。因此,使用人类气道的算法在生成动物气道几何模型时可能不准确。目的:本研究的目的是开发一种基于物理测量提取的几何细节生成猪气道树的算法。方法:在本研究中,利用分支直径、长度、分支角度和分支平面旋转的测量值,开发了一种能够生成真实猪气道树的算法。结果:父子支的世代关系有一定的发展趋势。不同分支的直径和长度与气道世代有关,分支角度主要与分支平面旋转有关。这些关系足以为建立猪大气道模型建立规则。结论:该算法生成的气道树可以为计算和实验研究提供一个近似的猪气道几何模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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