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Prediction of particle deposition in the lungs based on simple modeling of alveolar mixing

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Autore
Georgakakou S., Gourgoulianis K., Daniil Z., Bontozoglou V.
Data
2016
Language
en
DOI
10.1016/j.resp.2015.12.009
Soggetto
Article
boundary layer
breath holding
breathing pattern
computational fluid dynamics
controlled study
functional residual capacity
human
lung alveolus
mathematical model
particle size
priority journal
respiratory airflow
steady state
thermodynamics
tidal volume
algorithm
animal
biological model
breathing
bronchus
comparative study
lung alveolus
physiology
validation study
air
Air
Algorithms
Animals
Bronchi
Models, Cardiovascular
Pulmonary Alveoli
Respiration
Elsevier B.V.
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Abstract
A simplified model of particle deposition in the lungs has been developed and implemented, based on the hypothesis that perfect mixing takes place in the alveolar volume of each airway generation. This key idea is combined with purely convective transport along airways, driven by steady alveolar expansion and contraction, and results in an analytically tractable model. Predictions of the model, and in particular pulmonary deposition, are found in very good agreement with detailed benchmark data in the literature for particle diameters d≥. 0.1 μm. The success of this simple model provides indirect evidence in favor of the role of alveolar mixing in the deposition process. © 2016 Elsevier B.V.
URI
http://hdl.handle.net/11615/72032
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