Cargando…

Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode

PURPOSE: This study aimed to examine the validity, reliability and minimum detectable change (MDC) of the Cosmed K5 in breath by breath (BxB) mode, against VacuMed metabolic simulator. Intra and inter-units reliability was also assessed. METHODS: Fourteen metabolic rates (from 0.9 to 4 L.min-1) were...

Descripción completa

Detalles Bibliográficos
Autores principales: Guidetti, Laura, Meucci, Marco, Bolletta, Francesco, Emerenziani, Gian Pietro, Gallotta, Maria Chiara, Baldari, Carlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312326/
https://www.ncbi.nlm.nih.gov/pubmed/30596748
http://dx.doi.org/10.1371/journal.pone.0209925
_version_ 1783383762229264384
author Guidetti, Laura
Meucci, Marco
Bolletta, Francesco
Emerenziani, Gian Pietro
Gallotta, Maria Chiara
Baldari, Carlo
author_facet Guidetti, Laura
Meucci, Marco
Bolletta, Francesco
Emerenziani, Gian Pietro
Gallotta, Maria Chiara
Baldari, Carlo
author_sort Guidetti, Laura
collection PubMed
description PURPOSE: This study aimed to examine the validity, reliability and minimum detectable change (MDC) of the Cosmed K5 in breath by breath (BxB) mode, against VacuMed metabolic simulator. Intra and inter-units reliability was also assessed. METHODS: Fourteen metabolic rates (from 0.9 to 4 L.min-1) were reproduced by a VacuMed system and pulmonary ventilation (VE), oxygen consumption (VO(2)) and carbon dioxide production (VCO(2)) were measured by two different K5 units. Validity was assessed by ordinary least products (OLP) regression analysis, Bland-Altman plots, intraclass correlation coefficients (ICC), mean percentage differences, technical errors (TE) and MDC for VE, VO(2), and VCO(2). Intra- and inter-K5 reliability was evaluated by absolute percentage differences between measurements (MAPE), ICCs, TE, and MDC. RESULTS: Validity analysis from OLP regression data and Bland- Altman plots indicated high agreement between K5 and simulator. ICC values were excellent for all variables (>0.99). Mean percentage differences in VE (-0.50%, p = 0.11), VO(2) (-0.04%, p = 0.80), and VCO(2) (-1.03%, p = 0.09) showed no significant bias. The technical error (TE) ranged from 0.73% to 1.34% (VE and VCO(2) respectively). MDC were lower than 4% (VE = 2.0%, VO(2) = 3.8%, VCO(2) = 3.7%). The intra and inter K5 reliability assessment reveled excellent ICCs (>0.99), MAPE <2% (no significant differences between trials), TE < or around 1%, MDC <or around 3%. CONCLUSIONS: K5 in BxB mode is a valid and reliable system for metabolic measurements. This is the first study assessing the MDC accounting only for technical variability reporting intra- and inter-units MDCs <3.3%.
format Online
Article
Text
id pubmed-6312326
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-63123262019-01-08 Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode Guidetti, Laura Meucci, Marco Bolletta, Francesco Emerenziani, Gian Pietro Gallotta, Maria Chiara Baldari, Carlo PLoS One Research Article PURPOSE: This study aimed to examine the validity, reliability and minimum detectable change (MDC) of the Cosmed K5 in breath by breath (BxB) mode, against VacuMed metabolic simulator. Intra and inter-units reliability was also assessed. METHODS: Fourteen metabolic rates (from 0.9 to 4 L.min-1) were reproduced by a VacuMed system and pulmonary ventilation (VE), oxygen consumption (VO(2)) and carbon dioxide production (VCO(2)) were measured by two different K5 units. Validity was assessed by ordinary least products (OLP) regression analysis, Bland-Altman plots, intraclass correlation coefficients (ICC), mean percentage differences, technical errors (TE) and MDC for VE, VO(2), and VCO(2). Intra- and inter-K5 reliability was evaluated by absolute percentage differences between measurements (MAPE), ICCs, TE, and MDC. RESULTS: Validity analysis from OLP regression data and Bland- Altman plots indicated high agreement between K5 and simulator. ICC values were excellent for all variables (>0.99). Mean percentage differences in VE (-0.50%, p = 0.11), VO(2) (-0.04%, p = 0.80), and VCO(2) (-1.03%, p = 0.09) showed no significant bias. The technical error (TE) ranged from 0.73% to 1.34% (VE and VCO(2) respectively). MDC were lower than 4% (VE = 2.0%, VO(2) = 3.8%, VCO(2) = 3.7%). The intra and inter K5 reliability assessment reveled excellent ICCs (>0.99), MAPE <2% (no significant differences between trials), TE < or around 1%, MDC <or around 3%. CONCLUSIONS: K5 in BxB mode is a valid and reliable system for metabolic measurements. This is the first study assessing the MDC accounting only for technical variability reporting intra- and inter-units MDCs <3.3%. Public Library of Science 2018-12-31 /pmc/articles/PMC6312326/ /pubmed/30596748 http://dx.doi.org/10.1371/journal.pone.0209925 Text en © 2018 Guidetti et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Guidetti, Laura
Meucci, Marco
Bolletta, Francesco
Emerenziani, Gian Pietro
Gallotta, Maria Chiara
Baldari, Carlo
Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title_full Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title_fullStr Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title_full_unstemmed Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title_short Validity, reliability and minimum detectable change of COSMED K5 portable gas exchange system in breath-by-breath mode
title_sort validity, reliability and minimum detectable change of cosmed k5 portable gas exchange system in breath-by-breath mode
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312326/
https://www.ncbi.nlm.nih.gov/pubmed/30596748
http://dx.doi.org/10.1371/journal.pone.0209925
work_keys_str_mv AT guidettilaura validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode
AT meuccimarco validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode
AT bollettafrancesco validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode
AT emerenzianigianpietro validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode
AT gallottamariachiara validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode
AT baldaricarlo validityreliabilityandminimumdetectablechangeofcosmedk5portablegasexchangesysteminbreathbybreathmode