Modeling of the influence of tissue mechanical properties on the process of aerosol particles deposition in a model of human alveolus

A deposition of submicron spherical particles in gravity force field in a model of a single human alveolus was investigated. To mimic the realistic breathing patterns in the lungs, alveolar tissue was designed as a compressible and homogenous material which undergoes the expansion and contraction ca...

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Published inJournal of drug delivery science and technology Vol. 22; no. 2; pp. 153 - 159
Main Authors Żywczyk, Ł., Moskal, A.
Format Journal Article
LanguageEnglish
Published Paris Elsevier B.V 2012
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Abstract A deposition of submicron spherical particles in gravity force field in a model of a single human alveolus was investigated. To mimic the realistic breathing patterns in the lungs, alveolar tissue was designed as a compressible and homogenous material which undergoes the expansion and contraction caused by the change of pressure. The wide range of stiffness values and elasticity of the tissue were taken into account to explore the influence of pathological cases in the process of flow transport in the alveolar part of the human breathing system. A fluid-structure interaction model (FSI) incorporated into Adina software was used to model the fluid flow in the alveolus. The transport and the deposition of the aerosol particles were modeled using Brownian Dynamics algorithm. The obtained results indicate a strong influence of the mechanical properties of the tissue on the fluid flow and the deposition of aerosol particles.
AbstractList A deposition of submicron spherical particles in gravity force field in a model of a single human alveolus was investigated. To mimic the realistic breathing patterns in the lungs, alveolar tissue was designed as a compressible and homogenous material which undergoes the expansion and contraction caused by the change of pressure. The wide range of stiffness values and elasticity of the tissue were taken into account to explore the influence of pathological cases in the process of flow transport in the alveolar part of the human breathing system. A fluid-structure interaction model (FSI) incorporated into Adina software was used to model the fluid flow in the alveolus. The transport and the deposition of the aerosol particles were modeled using Brownian Dynamics algorithm. The obtained results indicate a strong influence of the mechanical properties of the tissue on the fluid flow and the deposition of aerosol particles.
Author Żywczyk, Ł.
Moskal, A.
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Cites_doi 10.1007/978-3-642-87553-3
10.1152/jappl.1996.80.4.1401
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Issue 2
Keywords Aerosol particles deposition
Alveolar tissue elasticity
Breathing pathologies
FSI
Pulmonary alveolus
Human
Pharmaceutical technology
Elasticity
Mechanical properties
Process
Modeling
Particle
Tissue
Aerosols
Deposition
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  ident: 10.1016/S1773-2247(12)50020-1_bb0030
  article-title: Simultaneous diffusion and sedimentation of aerosol particles from Poiseuille flow in a circular tube
  publication-title: J. Aerosol Sci.
  doi: 10.1016/0021-8502(78)90059-9
  contributor:
    fullname: Taulbee
– volume: 39
  start-page: 2113
  issue: 11
  year: 2006
  ident: 10.1016/S1773-2247(12)50020-1_bb0130
  article-title: Modeling of weak blast wave propagation in the lung
  publication-title: J. Biomech.
  doi: 10.1016/j.jbiomech.2005.05.033
  contributor:
    fullname: D’yachenko
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Snippet A deposition of submicron spherical particles in gravity force field in a model of a single human alveolus was investigated. To mimic the realistic breathing...
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SubjectTerms Aerosol particles deposition
Aerosols
Algorithms
Alveolar tissue elasticity
Alveoli
Biological and medical sciences
Breathing pathologies
Brownian motion
Computer programs
Drug delivery
Fluid flow
FSI
General pharmacology
Gravity
Lung
Mechanical properties
Medical sciences
Pharmaceutical technology. Pharmaceutical industry
Pharmacology. Drug treatments
Pressure
Pulmonary alveolus
Respiration
software
Title Modeling of the influence of tissue mechanical properties on the process of aerosol particles deposition in a model of human alveolus
URI https://dx.doi.org/10.1016/S1773-2247(12)50020-1
https://search.proquest.com/docview/1017971471
Volume 22
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