Koblinger L, Hofmann W
Central Research Institute for Physics, Budapest, Hungary.
Anat Rec. 1988 May;221(1):533-9. doi: 10.1002/ar.1092210109.
The laboratory rat is often used as a human surrogate in aerosol inhalation studies. Here we present a new stochastic model for the rat lung analogous to that for the human lung. Morphometric data on the tracheobronchial geometry of the rat lung provided by the Lovelace Inhalation Toxicology Research Institute were analyzed. The results of this statistical analysis reveal significant differences in diameters and branching angles between major and minor daughter tubes starting from the same bifurcation. As a consequence of the more monopodial airway branching in the rat lung compared to the more dichotomous structure of the human lung, we recommend classifying the rat lung airways by their diameters and not by generation numbers. The distributions of the geometric airway parameters and the correlations among them will be used for Monte Carlo deposition calculations.
在气溶胶吸入研究中,实验大鼠常被用作人类的替代模型。在此,我们提出一种新的大鼠肺部随机模型,类似于人类肺部模型。我们分析了洛夫莱斯吸入毒理学研究所提供的大鼠肺部气管支气管几何形态数据。该统计分析结果显示,从同一分叉处起始的主支和次支细支气管在直径和分支角度上存在显著差异。由于大鼠肺部气道分支比人类肺部更为单足状(而非更为二叉状结构),我们建议根据气道直径而非代数对大鼠肺部气道进行分类。这些气道几何参数的分布及其相互间的相关性将用于蒙特卡洛沉积计算。