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Accuracy and Precision of the COSMED K5 Portable Analyser

The main aims of this study were to determine the accuracy of the portable metabolic cart K5 by comparison with a stationary metabolic cart (Vyntus CPX), to check on the validity of Vyntus CPX using a butane combustion test, and to assess the reliability of K5 during prolonged walks in the field. Fo...

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Autores principales: Perez-Suarez, Ismael, Martin-Rincon, Marcos, Gonzalez-Henriquez, Juan José, Fezzardi, Chiara, Perez-Regalado, Sergio, Galvan-Alvarez, Victor, Juan-Habib, Julian W., Morales-Alamo, David, Calbet, Jose A. L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6308190/
https://www.ncbi.nlm.nih.gov/pubmed/30622475
http://dx.doi.org/10.3389/fphys.2018.01764
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author Perez-Suarez, Ismael
Martin-Rincon, Marcos
Gonzalez-Henriquez, Juan José
Fezzardi, Chiara
Perez-Regalado, Sergio
Galvan-Alvarez, Victor
Juan-Habib, Julian W.
Morales-Alamo, David
Calbet, Jose A. L.
author_facet Perez-Suarez, Ismael
Martin-Rincon, Marcos
Gonzalez-Henriquez, Juan José
Fezzardi, Chiara
Perez-Regalado, Sergio
Galvan-Alvarez, Victor
Juan-Habib, Julian W.
Morales-Alamo, David
Calbet, Jose A. L.
author_sort Perez-Suarez, Ismael
collection PubMed
description The main aims of this study were to determine the accuracy of the portable metabolic cart K5 by comparison with a stationary metabolic cart (Vyntus CPX), to check on the validity of Vyntus CPX using a butane combustion test, and to assess the reliability of K5 during prolonged walks in the field. For validation, measurements were consecutively performed tests with both devices at rest and during submaximal exercise (bicycling) at low (60 W) and moderate intensities (130–160 W) in 16 volunteers. For the reliability study, 14 subjects were measured two times during prolonged walks (13 km, at 5 km/h), with the K5 set in mixing chamber (Mix) mode. Vyntus measured the stoichiometric RQ of butane combustion with high accuracy (error <1.6%) and precision (CV <0.5%), at VO(2) values between 0.788 and 6.395 L/min. At rest and 60 W, there was good agreement between Vyntus and K5 (breath-by-breath, B×B) in VO(2), VCO(2), RER, and energy expenditure, while in Mix mode the K5 overestimated VO(2) by 13.4 and 5.8%, respectively. Compared to Vyntus, at moderate intensity the K5 in B×B mode underestimated VO(2), VCO(2,) and energy expenditure by 6.6, 6.9, and 6.6%, respectively. However, at this intensity there was an excellent agreement between methods in RER and fat oxidation. In Mix mode, K5 overestimated VO(2) by 5.8 and 4.8%, at 60 W and the higher intensity, respectively. The K5 had excellent reliability during the field tests. Total energy expenditure per Km was determined with a CV for repeated measurements of 4.5% (CI: 3.2–6.9%) and a concordance correlation coefficient of 0.91, similar to the variability in VO(2). This high reproducibility was explained by the low variation of F(E)O(2) measurements, which had a CV of 0.9% (CI: 0.7–1.5%) combined with a slightly greater variability of F(E)CO(2), V(E), VCO(2), and RER. In conclusion, the K5 is an excellent portable metabolic cart which is almost as accurate as a state-of-art stationary metabolic cart, capable of measuring precisely energy expenditure in the field, showing a reliable performance during more than 2 h of continuous work. At high intensities, the mixing-chamber mode is more accurate than the B×B mode.
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spelling pubmed-63081902019-01-08 Accuracy and Precision of the COSMED K5 Portable Analyser Perez-Suarez, Ismael Martin-Rincon, Marcos Gonzalez-Henriquez, Juan José Fezzardi, Chiara Perez-Regalado, Sergio Galvan-Alvarez, Victor Juan-Habib, Julian W. Morales-Alamo, David Calbet, Jose A. L. Front Physiol Physiology The main aims of this study were to determine the accuracy of the portable metabolic cart K5 by comparison with a stationary metabolic cart (Vyntus CPX), to check on the validity of Vyntus CPX using a butane combustion test, and to assess the reliability of K5 during prolonged walks in the field. For validation, measurements were consecutively performed tests with both devices at rest and during submaximal exercise (bicycling) at low (60 W) and moderate intensities (130–160 W) in 16 volunteers. For the reliability study, 14 subjects were measured two times during prolonged walks (13 km, at 5 km/h), with the K5 set in mixing chamber (Mix) mode. Vyntus measured the stoichiometric RQ of butane combustion with high accuracy (error <1.6%) and precision (CV <0.5%), at VO(2) values between 0.788 and 6.395 L/min. At rest and 60 W, there was good agreement between Vyntus and K5 (breath-by-breath, B×B) in VO(2), VCO(2), RER, and energy expenditure, while in Mix mode the K5 overestimated VO(2) by 13.4 and 5.8%, respectively. Compared to Vyntus, at moderate intensity the K5 in B×B mode underestimated VO(2), VCO(2,) and energy expenditure by 6.6, 6.9, and 6.6%, respectively. However, at this intensity there was an excellent agreement between methods in RER and fat oxidation. In Mix mode, K5 overestimated VO(2) by 5.8 and 4.8%, at 60 W and the higher intensity, respectively. The K5 had excellent reliability during the field tests. Total energy expenditure per Km was determined with a CV for repeated measurements of 4.5% (CI: 3.2–6.9%) and a concordance correlation coefficient of 0.91, similar to the variability in VO(2). This high reproducibility was explained by the low variation of F(E)O(2) measurements, which had a CV of 0.9% (CI: 0.7–1.5%) combined with a slightly greater variability of F(E)CO(2), V(E), VCO(2), and RER. In conclusion, the K5 is an excellent portable metabolic cart which is almost as accurate as a state-of-art stationary metabolic cart, capable of measuring precisely energy expenditure in the field, showing a reliable performance during more than 2 h of continuous work. At high intensities, the mixing-chamber mode is more accurate than the B×B mode. Frontiers Media S.A. 2018-12-21 /pmc/articles/PMC6308190/ /pubmed/30622475 http://dx.doi.org/10.3389/fphys.2018.01764 Text en Copyright © 2018 Perez-Suarez, Martin-Rincon, Gonzalez-Henriquez, Fezzardi, Perez-Regalado, Galvan-Alvarez, Juan-Habib, Morales-Alamo and Calbet. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Perez-Suarez, Ismael
Martin-Rincon, Marcos
Gonzalez-Henriquez, Juan José
Fezzardi, Chiara
Perez-Regalado, Sergio
Galvan-Alvarez, Victor
Juan-Habib, Julian W.
Morales-Alamo, David
Calbet, Jose A. L.
Accuracy and Precision of the COSMED K5 Portable Analyser
title Accuracy and Precision of the COSMED K5 Portable Analyser
title_full Accuracy and Precision of the COSMED K5 Portable Analyser
title_fullStr Accuracy and Precision of the COSMED K5 Portable Analyser
title_full_unstemmed Accuracy and Precision of the COSMED K5 Portable Analyser
title_short Accuracy and Precision of the COSMED K5 Portable Analyser
title_sort accuracy and precision of the cosmed k5 portable analyser
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6308190/
https://www.ncbi.nlm.nih.gov/pubmed/30622475
http://dx.doi.org/10.3389/fphys.2018.01764
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