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Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life

Lower respiratory tract illness (LRTI) is a leading cause of mortality and morbidity in children. Sensitive and noninvasive infant lung function techniques are needed to measure risk for and impact of LRTI on lung health. The objective of this study was to investigate whether lung function derived f...

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Autores principales: Gray, Diane M., Czovek, Dorottya, McMillan, Lauren, Turkovic, Lidija, Stadler, Jacob A.M., Vanker, Anessa, Radics, Bence L., Gingl, Zoltán, Hall, Graham L., Sly, Peter D., Zar, Heather J., Hantos, Zoltán
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931666/
https://www.ncbi.nlm.nih.gov/pubmed/30464010
http://dx.doi.org/10.1183/13993003.00998-2018
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author Gray, Diane M.
Czovek, Dorottya
McMillan, Lauren
Turkovic, Lidija
Stadler, Jacob A.M.
Vanker, Anessa
Radics, Bence L.
Gingl, Zoltán
Hall, Graham L.
Sly, Peter D.
Zar, Heather J.
Hantos, Zoltán
author_facet Gray, Diane M.
Czovek, Dorottya
McMillan, Lauren
Turkovic, Lidija
Stadler, Jacob A.M.
Vanker, Anessa
Radics, Bence L.
Gingl, Zoltán
Hall, Graham L.
Sly, Peter D.
Zar, Heather J.
Hantos, Zoltán
author_sort Gray, Diane M.
collection PubMed
description Lower respiratory tract illness (LRTI) is a leading cause of mortality and morbidity in children. Sensitive and noninvasive infant lung function techniques are needed to measure risk for and impact of LRTI on lung health. The objective of this study was to investigate whether lung function derived from the intra-breath forced oscillation technique (FOT) was able to identify healthy infants at risk of LRTI in the first year of life. Lung function was measured with the novel intra-breath FOT, in 6-week-old infants in a South African birth cohort (Drakenstein Child Health Study). LRTI during the first year was confirmed by study staff. The association between baseline lung function and LRTI was assessed with logistic regression and odds ratios determined using optimal cut-off values. Of the 627 healthy infants with successful lung function testing, 161 (24%) had 238 LRTI episodes subsequently during the first year. Volume dependence of respiratory resistance (ΔR) and reactance (ΔX) was associated with LRTI. The predictive value was stronger if LRTI was recurrent (n=50 (31%): OR 2.5, ΔX), required hospitalisation (n=38 (16%): OR 5.4, ΔR) or was associated with wheeze (n=87 (37%): OR 3.9, ΔX). Intra-breath FOT can identify healthy infants at risk of developing LRTI, wheezing or severe illness in the first year of life.
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spelling pubmed-79316662021-03-09 Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life Gray, Diane M. Czovek, Dorottya McMillan, Lauren Turkovic, Lidija Stadler, Jacob A.M. Vanker, Anessa Radics, Bence L. Gingl, Zoltán Hall, Graham L. Sly, Peter D. Zar, Heather J. Hantos, Zoltán Eur Respir J Original Articles Lower respiratory tract illness (LRTI) is a leading cause of mortality and morbidity in children. Sensitive and noninvasive infant lung function techniques are needed to measure risk for and impact of LRTI on lung health. The objective of this study was to investigate whether lung function derived from the intra-breath forced oscillation technique (FOT) was able to identify healthy infants at risk of LRTI in the first year of life. Lung function was measured with the novel intra-breath FOT, in 6-week-old infants in a South African birth cohort (Drakenstein Child Health Study). LRTI during the first year was confirmed by study staff. The association between baseline lung function and LRTI was assessed with logistic regression and odds ratios determined using optimal cut-off values. Of the 627 healthy infants with successful lung function testing, 161 (24%) had 238 LRTI episodes subsequently during the first year. Volume dependence of respiratory resistance (ΔR) and reactance (ΔX) was associated with LRTI. The predictive value was stronger if LRTI was recurrent (n=50 (31%): OR 2.5, ΔX), required hospitalisation (n=38 (16%): OR 5.4, ΔR) or was associated with wheeze (n=87 (37%): OR 3.9, ΔX). Intra-breath FOT can identify healthy infants at risk of developing LRTI, wheezing or severe illness in the first year of life. European Respiratory Society 2019-01-31 /pmc/articles/PMC7931666/ /pubmed/30464010 http://dx.doi.org/10.1183/13993003.00998-2018 Text en Copyright ©ERS 2019. This article is open access and distributed under the terms of the Creative Commons Attribution Licence 4.0.
spellingShingle Original Articles
Gray, Diane M.
Czovek, Dorottya
McMillan, Lauren
Turkovic, Lidija
Stadler, Jacob A.M.
Vanker, Anessa
Radics, Bence L.
Gingl, Zoltán
Hall, Graham L.
Sly, Peter D.
Zar, Heather J.
Hantos, Zoltán
Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title_full Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title_fullStr Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title_full_unstemmed Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title_short Intra-breath measures of respiratory mechanics in healthy African infants detect risk of respiratory illness in early life
title_sort intra-breath measures of respiratory mechanics in healthy african infants detect risk of respiratory illness in early life
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931666/
https://www.ncbi.nlm.nih.gov/pubmed/30464010
http://dx.doi.org/10.1183/13993003.00998-2018
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