-
Something wrong with this record ?
A method for in vitro regional aerosol deposition measurement in a model of the human tracheobronchial tree by the positron emission tomography
F. Lizal, M. Belka, J. Adam, J. Jedelsky, M. Jicha,
Language English Country England, Great Britain
Document type Journal Article, Research Support, Non-U.S. Gov't
- MeSH
- Aerosols administration & dosage pharmacokinetics MeSH
- Models, Biological * MeSH
- Bronchi metabolism MeSH
- Drug Delivery Systems MeSH
- Humans MeSH
- Positron-Emission Tomography methods MeSH
- Trachea metabolism MeSH
- Check Tag
- Humans MeSH
- Male MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
Researchers have been studying aerosol transport in human lungs for some decades. The overall lung deposition can be predicted with sufficient precision nowadays. However, the prediction of local deposition remains an unsolved problem. Numerical modeling of aerosol transport can provide detailed data with such precision and spatial resolution which were unavailable in the past. Yet, the necessary validation of numerical results represents a difficult task, as the experimental data in a sufficient spatial resolution are hardly available. This article introduces a method based on positron emission tomography, which allows acquisition of detailed experimental data on local aerosol deposition in a realistic model of human lungs. The method utilizes the Condensation Monodisperse Aerosol Generator modified for a safe production of radioactive aerosol particles and a special measuring rig. The scanning of the model is performed on a positron emission tomography-computed tomography scanner. The evaluation of aerosol deposition is based on a volume radioactivity analysis in a specialized, yet publicly available software. The reliability of the method was tested and its first results are discussed in the article. The measurements performed using the presented method can serve for validation of numerical simulations, since the presented lung model digital geometry is available.
References provided by Crossref.org
- 000
- 00000naa a2200000 a 4500
- 001
- bmc17001053
- 003
- CZ-PrNML
- 005
- 20170112114628.0
- 007
- ta
- 008
- 170103s2015 enk f 000 0|eng||
- 009
- AR
- 024 7_
- $a 10.1177/0954411915600005 $2 doi
- 024 7_
- $a 10.1177/0954411915600005 $2 doi
- 035 __
- $a (PubMed)26276348
- 040 __
- $a ABA008 $b cze $d ABA008 $e AACR2
- 041 0_
- $a eng
- 044 __
- $a enk
- 100 1_
- $a Lizal, Frantisek $u Department of Thermodynamics and Environmental Engineering, Faculty of Mechanical Engineering, Brno University of Technology, Brno, Czech Republic lizal@fme.vutbr.cz.
- 245 12
- $a A method for in vitro regional aerosol deposition measurement in a model of the human tracheobronchial tree by the positron emission tomography / $c F. Lizal, M. Belka, J. Adam, J. Jedelsky, M. Jicha,
- 520 9_
- $a Researchers have been studying aerosol transport in human lungs for some decades. The overall lung deposition can be predicted with sufficient precision nowadays. However, the prediction of local deposition remains an unsolved problem. Numerical modeling of aerosol transport can provide detailed data with such precision and spatial resolution which were unavailable in the past. Yet, the necessary validation of numerical results represents a difficult task, as the experimental data in a sufficient spatial resolution are hardly available. This article introduces a method based on positron emission tomography, which allows acquisition of detailed experimental data on local aerosol deposition in a realistic model of human lungs. The method utilizes the Condensation Monodisperse Aerosol Generator modified for a safe production of radioactive aerosol particles and a special measuring rig. The scanning of the model is performed on a positron emission tomography-computed tomography scanner. The evaluation of aerosol deposition is based on a volume radioactivity analysis in a specialized, yet publicly available software. The reliability of the method was tested and its first results are discussed in the article. The measurements performed using the presented method can serve for validation of numerical simulations, since the presented lung model digital geometry is available.
- 650 _2
- $a aerosoly $x aplikace a dávkování $x farmakokinetika $7 D000336
- 650 _2
- $a bronchy $x metabolismus $x radioizotopová diagnostika $7 D001980
- 650 _2
- $a lékové transportní systémy $7 D016503
- 650 _2
- $a lidé $7 D006801
- 650 _2
- $a mužské pohlaví $7 D008297
- 650 12
- $a biologické modely $7 D008954
- 650 _2
- $a pozitronová emisní tomografie $x metody $7 D049268
- 650 _2
- $a trachea $x metabolismus $x radioizotopová diagnostika $7 D014132
- 655 _2
- $a časopisecké články $7 D016428
- 655 _2
- $a práce podpořená grantem $7 D013485
- 700 1_
- $a Belka, Miloslav $u Department of Thermodynamics and Environmental Engineering, Faculty of Mechanical Engineering, Brno University of Technology, Brno, Czech Republic.
- 700 1_
- $a Adam, Jan $u Division of Radiopharmaceuticals, UJV Rez a.s., Husinec, Czech Republic Masaryk Memorial Cancer Institute, Brno, Czech Republic. $7 xx0116781
- 700 1_
- $a Jedelsky, Jan $u Department of Thermodynamics and Environmental Engineering, Faculty of Mechanical Engineering, Brno University of Technology, Brno, Czech Republic.
- 700 1_
- $a Jicha, Miroslav $u Department of Thermodynamics and Environmental Engineering, Faculty of Mechanical Engineering, Brno University of Technology, Brno, Czech Republic.
- 773 0_
- $w MED00008931 $t Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine $x 2041-3033 $g Roč. 229, č. 10 (2015), s. 750-7
- 856 41
- $u https://pubmed.ncbi.nlm.nih.gov/26276348 $y Pubmed
- 910 __
- $a ABA008 $b sig $c sign $y a $z 0
- 990 __
- $a 20170103 $b ABA008
- 991 __
- $a 20170112114728 $b ABA008
- 999 __
- $a ok $b bmc $g 1180193 $s 961620
- BAS __
- $a 3
- BAS __
- $a PreBMC
- BMC __
- $a 2015 $b 229 $c 10 $d 750-7 $e 20150813 $i 2041-3033 $m Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine $n Proc Inst Mech Eng [H] $x MED00008931
- LZP __
- $a Pubmed-20170103