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GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise

PURPOSE: The aim of the current study is to describe the functionality of free software developed for energy system contributions and energy expenditure calculation during exercise, namely GEDAE-LaB. METHODS: Eleven participants performed the following tests: 1) a maximal cycling incremental test to...

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Autores principales: Bertuzzi, Rômulo, Melegati, Jorge, Bueno, Salomão, Ghiarone, Thaysa, Pasqua, Leonardo A., Gáspari, Arthur Fernandes, Lima-Silva, Adriano E., Goldman, Alfredo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4699761/
https://www.ncbi.nlm.nih.gov/pubmed/26727499
http://dx.doi.org/10.1371/journal.pone.0145733
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author Bertuzzi, Rômulo
Melegati, Jorge
Bueno, Salomão
Ghiarone, Thaysa
Pasqua, Leonardo A.
Gáspari, Arthur Fernandes
Lima-Silva, Adriano E.
Goldman, Alfredo
author_facet Bertuzzi, Rômulo
Melegati, Jorge
Bueno, Salomão
Ghiarone, Thaysa
Pasqua, Leonardo A.
Gáspari, Arthur Fernandes
Lima-Silva, Adriano E.
Goldman, Alfredo
author_sort Bertuzzi, Rômulo
collection PubMed
description PURPOSE: The aim of the current study is to describe the functionality of free software developed for energy system contributions and energy expenditure calculation during exercise, namely GEDAE-LaB. METHODS: Eleven participants performed the following tests: 1) a maximal cycling incremental test to measure the ventilatory threshold and maximal oxygen uptake ([Image: see text] O(2)max); 2) a cycling workload constant test at moderate domain (90% ventilatory threshold); 3) a cycling workload constant test at severe domain (110% [Image: see text] O(2)max). Oxygen uptake and plasma lactate were measured during the tests. The contributions of the aerobic (A(MET)), anaerobic lactic (LA(MET)), and anaerobic alactic (AL(MET)) systems were calculated based on the oxygen uptake during exercise, the oxygen energy equivalents provided by lactate accumulation, and the fast component of excess post-exercise oxygen consumption, respectively. In order to assess the intra-investigator variation, four different investigators performed the analyses independently using GEDAE-LaB. A direct comparison with commercial software was also provided. RESULTS: All subjects completed 10 min of exercise at moderate domain, while the time to exhaustion at severe domain was 144 ± 65 s. The A(MET), LA(MET), and AL(MET) contributions during moderate domain were about 93, 2, and 5%, respectively. The A(MET), LA(MET), and AL(MET) contributions during severe domain were about 66, 21, and 13%, respectively. No statistical differences were found between the energy system contributions and energy expenditure obtained by GEDAE-LaB and commercial software for both moderate and severe domains (P > 0.05). The ICC revealed that these estimates were highly reliable among the four investigators for both moderate and severe domains (all ICC ≥ 0.94). CONCLUSION: These findings suggest that GEDAE-LaB is a free software easily comprehended by users minimally familiarized with adopted procedures for calculations of energetic profile using oxygen uptake and lactate accumulation during exercise. By providing availability of the software and its source code we hope to facilitate future related research.
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spelling pubmed-46997612016-01-15 GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise Bertuzzi, Rômulo Melegati, Jorge Bueno, Salomão Ghiarone, Thaysa Pasqua, Leonardo A. Gáspari, Arthur Fernandes Lima-Silva, Adriano E. Goldman, Alfredo PLoS One Research Article PURPOSE: The aim of the current study is to describe the functionality of free software developed for energy system contributions and energy expenditure calculation during exercise, namely GEDAE-LaB. METHODS: Eleven participants performed the following tests: 1) a maximal cycling incremental test to measure the ventilatory threshold and maximal oxygen uptake ([Image: see text] O(2)max); 2) a cycling workload constant test at moderate domain (90% ventilatory threshold); 3) a cycling workload constant test at severe domain (110% [Image: see text] O(2)max). Oxygen uptake and plasma lactate were measured during the tests. The contributions of the aerobic (A(MET)), anaerobic lactic (LA(MET)), and anaerobic alactic (AL(MET)) systems were calculated based on the oxygen uptake during exercise, the oxygen energy equivalents provided by lactate accumulation, and the fast component of excess post-exercise oxygen consumption, respectively. In order to assess the intra-investigator variation, four different investigators performed the analyses independently using GEDAE-LaB. A direct comparison with commercial software was also provided. RESULTS: All subjects completed 10 min of exercise at moderate domain, while the time to exhaustion at severe domain was 144 ± 65 s. The A(MET), LA(MET), and AL(MET) contributions during moderate domain were about 93, 2, and 5%, respectively. The A(MET), LA(MET), and AL(MET) contributions during severe domain were about 66, 21, and 13%, respectively. No statistical differences were found between the energy system contributions and energy expenditure obtained by GEDAE-LaB and commercial software for both moderate and severe domains (P > 0.05). The ICC revealed that these estimates were highly reliable among the four investigators for both moderate and severe domains (all ICC ≥ 0.94). CONCLUSION: These findings suggest that GEDAE-LaB is a free software easily comprehended by users minimally familiarized with adopted procedures for calculations of energetic profile using oxygen uptake and lactate accumulation during exercise. By providing availability of the software and its source code we hope to facilitate future related research. Public Library of Science 2016-01-04 /pmc/articles/PMC4699761/ /pubmed/26727499 http://dx.doi.org/10.1371/journal.pone.0145733 Text en © 2016 Bertuzzi 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
Bertuzzi, Rômulo
Melegati, Jorge
Bueno, Salomão
Ghiarone, Thaysa
Pasqua, Leonardo A.
Gáspari, Arthur Fernandes
Lima-Silva, Adriano E.
Goldman, Alfredo
GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title_full GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title_fullStr GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title_full_unstemmed GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title_short GEDAE-LaB: A Free Software to Calculate the Energy System Contributions during Exercise
title_sort gedae-lab: a free software to calculate the energy system contributions during exercise
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4699761/
https://www.ncbi.nlm.nih.gov/pubmed/26727499
http://dx.doi.org/10.1371/journal.pone.0145733
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