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Modeling intersubject variability of particle deposition in human lungs

机译:模拟人肺中颗粒沉积物的受试者间变异性

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摘要

The morphological variability in human lungs was simulated by 10 multiple-path lung models, generated on the basis of probability distributions and correlations of airway parameters provided by the stochastic lung model of Koblinger and Hofmann (Phys, Med. Biol. 30 (1985) 541). Total, regional and gemeration-per-generation deposition was comuted for particle sizes in the range of 0.01-10 #mu#m under resting breathing conditions. Our calculations suggest that structural and volumetric differences of lung morphologies among different individuals are primarily responsible for the experimentally observed intersubject variability in total and regional deposition under controlled breathing conditions. Individual differences in deposition among single airways can be substantially larger than those in total and regional deposition. Furthermore, variations are most pronoiunced for small (0.01 #mu#m) and large (10 #mu#m) particles.
机译:通过10种多径肺模型来模拟人肺的形态变异性,该模型是根据Koblinger和Hofmann随机肺模型提供的气道参数的概率分布和相关性生成的(Phys,Med。Biol。30(1985)541) )。在静息呼吸条件下,可计算出总沉积物,区域沉积物和每代宝石的沉积物的粒径范围为0.01-10#mu#m。我们的计算表明,不同个体之间肺部形态的结构和体积差异主要是由实验观察到的受试者间在受控呼吸条件下总体和区域沉积物的变异性所致。单个气道之间的沉积物个体差异可能会比总和区域沉积物中的个体差异大得多。此外,对于小颗粒(0.01#mu#m)和大颗粒(10#mu#m),变化最明显。

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