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Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies

Exhaled breath analysis for early disease detection may provide a convenient method for painless and non-invasive diagnosis. In this work, a novel, compact and easy-to-use breath analyzer platform with a modular sensing chamber and direct breath sampling unit is presented. The developed analyzer sys...

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Autores principales: Jaeschke, Carsten, Padilla, Marta, Glöckler, Johannes, Polaka, Inese, Leja, Martins, Veliks, Viktors, Mitrovics, Jan, Leja, Marcis, Mizaikoff, Boris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8235513/
https://www.ncbi.nlm.nih.gov/pubmed/34205805
http://dx.doi.org/10.3390/molecules26123776
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author Jaeschke, Carsten
Padilla, Marta
Glöckler, Johannes
Polaka, Inese
Leja, Martins
Veliks, Viktors
Mitrovics, Jan
Leja, Marcis
Mizaikoff, Boris
author_facet Jaeschke, Carsten
Padilla, Marta
Glöckler, Johannes
Polaka, Inese
Leja, Martins
Veliks, Viktors
Mitrovics, Jan
Leja, Marcis
Mizaikoff, Boris
author_sort Jaeschke, Carsten
collection PubMed
description Exhaled breath analysis for early disease detection may provide a convenient method for painless and non-invasive diagnosis. In this work, a novel, compact and easy-to-use breath analyzer platform with a modular sensing chamber and direct breath sampling unit is presented. The developed analyzer system comprises a compact, low volume, temperature-controlled sensing chamber in three modules that can host any type of resistive gas sensor arrays. Furthermore, in this study three modular breath analyzers are explicitly tested for reproducibility in a real-life breath analysis experiment with several calibration transfer (CT) techniques using transfer samples from the experiment. The experiment consists of classifying breath samples from 15 subjects before and after eating a specific meal using three instruments. We investigate the possibility to transfer calibration models across instruments using transfer samples from the experiment under study, since representative samples of human breath at some conditions are difficult to simulate in a laboratory. For example, exhaled breath from subjects suffering from a disease for which the biomarkers are mostly unknown. Results show that many transfer samples of all the classes under study (in our case meal/no meal) are needed, although some CT methods present reasonably good results with only one class.
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spelling pubmed-82355132021-06-27 Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies Jaeschke, Carsten Padilla, Marta Glöckler, Johannes Polaka, Inese Leja, Martins Veliks, Viktors Mitrovics, Jan Leja, Marcis Mizaikoff, Boris Molecules Article Exhaled breath analysis for early disease detection may provide a convenient method for painless and non-invasive diagnosis. In this work, a novel, compact and easy-to-use breath analyzer platform with a modular sensing chamber and direct breath sampling unit is presented. The developed analyzer system comprises a compact, low volume, temperature-controlled sensing chamber in three modules that can host any type of resistive gas sensor arrays. Furthermore, in this study three modular breath analyzers are explicitly tested for reproducibility in a real-life breath analysis experiment with several calibration transfer (CT) techniques using transfer samples from the experiment. The experiment consists of classifying breath samples from 15 subjects before and after eating a specific meal using three instruments. We investigate the possibility to transfer calibration models across instruments using transfer samples from the experiment under study, since representative samples of human breath at some conditions are difficult to simulate in a laboratory. For example, exhaled breath from subjects suffering from a disease for which the biomarkers are mostly unknown. Results show that many transfer samples of all the classes under study (in our case meal/no meal) are needed, although some CT methods present reasonably good results with only one class. MDPI 2021-06-21 /pmc/articles/PMC8235513/ /pubmed/34205805 http://dx.doi.org/10.3390/molecules26123776 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jaeschke, Carsten
Padilla, Marta
Glöckler, Johannes
Polaka, Inese
Leja, Martins
Veliks, Viktors
Mitrovics, Jan
Leja, Marcis
Mizaikoff, Boris
Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title_full Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title_fullStr Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title_full_unstemmed Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title_short Modular Breath Analyzer (MBA): Introduction of a Breath Analyzer Platform Based on an Innovative and Unique, Modular eNose Concept for Breath Diagnostics and Utilization of Calibration Transfer Methods in Breath Analysis Studies
title_sort modular breath analyzer (mba): introduction of a breath analyzer platform based on an innovative and unique, modular enose concept for breath diagnostics and utilization of calibration transfer methods in breath analysis studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8235513/
https://www.ncbi.nlm.nih.gov/pubmed/34205805
http://dx.doi.org/10.3390/molecules26123776
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