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PAŠTĚKA, R. FORJAN, M. SAUERMANN, S. DRAUSCHKE, A.
Original Title
Electro-mechanical Lung Simulator Using Polymer and Organic Human Lung Equivalents for Realistic Breathing Simulation
Type
journal article in Web of Science
Language
English
Original Abstract
Simulation models in respiratory research are increasingly used for medical product development and testing, especially because in-vivo models are coupled with a high degree of complexity and ethical concerns. This work introduces a respiratory simulation system, which is bridging the gap between the complex, real anatomical environment and the safe, cost-effective simulation methods. The presented electro-mechanical lung simulator, xPULM, combines in-silico, ex-vivo and mechanical respiratory approaches by realistically replicating an actively breathing human lung. The reproducibility of sinusoidal breathing simulations with xPULM was verified for selected breathing frequencies (10-18 bpm) and tidal volumes (400-600 ml) physiologically occurring during human breathing at rest. Human lung anatomy was modelled using latex bags and primed porcine lungs. High reproducibility of flow and pressure characteristics was shown by evaluating breathing cycles (n(Total) = 3273) with highest standard deviation vertical bar 3 sigma vertical bar for both, simplified lung equivalents (mu(V) = 23.98 +/- 1.04 l/min, mu(P) = -0.78 +/- 0.63 hPa) and primed porcine lungs (mu(V) = 18.87 +/- 2.49 l/min, mu(P) = -21.13 +/- 1.47 hPa). The adaptability of the breathing simulation parameters, coupled with the use of porcine lungs salvaged from a slaughterhouse process, represents an advancement towards anatomically and physiologically realistic modelling of human respiration.
Keywords
respiration simulation; biomedical electromechanical; systems, alternative to animal testing; lung simulation; primed porcine lungs; biomedical engineering education;
Authors
PAŠTĚKA, R.; FORJAN, M.; SAUERMANN, S.; DRAUSCHKE, A.
Released
24. 12. 2019
Publisher
NATURE PUBLISHING GROUP
Location
LONDON
ISBN
2045-2322
Periodical
Scientific Reports
Year of study
9
Number
State
United Kingdom of Great Britain and Northern Ireland
Pages from
1
Pages to
12
Pages count
URL
https://www.nature.com/articles/s41598-019-56176-6#article-info
Full text in the Digital Library
http://hdl.handle.net/11012/195736
BibTex
@article{BUT162245, author="Richard {Paštěka} and Mathias {Forjan} and Stefan {Sauermann} and Andreas {Drauschke}", title="Electro-mechanical Lung Simulator Using Polymer and Organic Human Lung Equivalents for Realistic Breathing Simulation", journal="Scientific Reports", year="2019", volume="9", number="9", pages="1--12", doi="10.1038/s41598-019-56176-6", issn="2045-2322", url="https://www.nature.com/articles/s41598-019-56176-6#article-info" }