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Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power

PURPOSE: We compared a new locomotor-specific model to track the expenditure and reconstitution of work done above critical power (W´) and balance of W´ (W´(BAL)) by modelling flat over-ground power during exhaustive intermittent running. METHOD: Nine male participants completed a ramp test, 3-min a...

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Autores principales: Vassallo, Christian, Gray, Adrian, Cummins, Cloe, Murphy, Aron, Waldron, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6969867/
https://www.ncbi.nlm.nih.gov/pubmed/31776696
http://dx.doi.org/10.1007/s00421-019-04266-8
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author Vassallo, Christian
Gray, Adrian
Cummins, Cloe
Murphy, Aron
Waldron, Mark
author_facet Vassallo, Christian
Gray, Adrian
Cummins, Cloe
Murphy, Aron
Waldron, Mark
author_sort Vassallo, Christian
collection PubMed
description PURPOSE: We compared a new locomotor-specific model to track the expenditure and reconstitution of work done above critical power (W´) and balance of W´ (W´(BAL)) by modelling flat over-ground power during exhaustive intermittent running. METHOD: Nine male participants completed a ramp test, 3-min all-out test and the 30–15 intermittent fitness test (30–15 IFT), and performed a severe-intensity constant work-rate trial (S(CWR)) at the maximum oxygen uptake velocity (vV̇O(2max)). Four intermittent trials followed: 60-s at vV̇O(2max) + 50% Δ(1) (Δ(1) = vV̇O(2max) − critical velocity [V(Crit)]) interspersed by 30-s in light (S(L); 40% vV̇O(2max)), moderate (S(M); 90% gas-exchange threshold velocity [V(GET)]), heavy (S(H); V(GET) + 50% Δ(2) [Δ(2) = V(Crit) − V(GET)]), or severe (S(S); vV̇O(2max) − 50% Δ(1)) domains. Data from Global Positioning Systems were derived to model over-ground power. The difference between critical and recovery power (D(CP)), time constant for reconstitution of W´ ([Formula: see text] ), time to limit of tolerance (T(LIM)), and W´(BAL) from the integral (W´(BALint)), differential (W´(BALdiff)), and locomotor-specific (OG-W´(BAL)) methods were compared. RESULTS: The relationship between [Formula: see text] and D(CP) was exponential (r(2) = 0.52). The [Formula: see text] for S(L), S(M), and S(H) trials were 119 ± 32-s, 190 ± 45-s, and 336 ± 77-s, respectively. Actual T(LIM) in the 30–15 IFT (968 ± 117-s) compared closely to T(LIM) predicted by OG-W´(BAL) (929 ± 94-s, P > 0.100) and W´(BALdiff) (938 ± 84-s, P > 0.100) but not to W´(BALint) (848 ± 91-s, P = 0.001). CONCLUSION: The OG-W´(BAL) accurately tracked W´ kinetics during intermittent running to exhaustion on flat surfaces.
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spelling pubmed-69698672020-01-30 Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power Vassallo, Christian Gray, Adrian Cummins, Cloe Murphy, Aron Waldron, Mark Eur J Appl Physiol Original Article PURPOSE: We compared a new locomotor-specific model to track the expenditure and reconstitution of work done above critical power (W´) and balance of W´ (W´(BAL)) by modelling flat over-ground power during exhaustive intermittent running. METHOD: Nine male participants completed a ramp test, 3-min all-out test and the 30–15 intermittent fitness test (30–15 IFT), and performed a severe-intensity constant work-rate trial (S(CWR)) at the maximum oxygen uptake velocity (vV̇O(2max)). Four intermittent trials followed: 60-s at vV̇O(2max) + 50% Δ(1) (Δ(1) = vV̇O(2max) − critical velocity [V(Crit)]) interspersed by 30-s in light (S(L); 40% vV̇O(2max)), moderate (S(M); 90% gas-exchange threshold velocity [V(GET)]), heavy (S(H); V(GET) + 50% Δ(2) [Δ(2) = V(Crit) − V(GET)]), or severe (S(S); vV̇O(2max) − 50% Δ(1)) domains. Data from Global Positioning Systems were derived to model over-ground power. The difference between critical and recovery power (D(CP)), time constant for reconstitution of W´ ([Formula: see text] ), time to limit of tolerance (T(LIM)), and W´(BAL) from the integral (W´(BALint)), differential (W´(BALdiff)), and locomotor-specific (OG-W´(BAL)) methods were compared. RESULTS: The relationship between [Formula: see text] and D(CP) was exponential (r(2) = 0.52). The [Formula: see text] for S(L), S(M), and S(H) trials were 119 ± 32-s, 190 ± 45-s, and 336 ± 77-s, respectively. Actual T(LIM) in the 30–15 IFT (968 ± 117-s) compared closely to T(LIM) predicted by OG-W´(BAL) (929 ± 94-s, P > 0.100) and W´(BALdiff) (938 ± 84-s, P > 0.100) but not to W´(BALint) (848 ± 91-s, P = 0.001). CONCLUSION: The OG-W´(BAL) accurately tracked W´ kinetics during intermittent running to exhaustion on flat surfaces. Springer Berlin Heidelberg 2019-11-27 2020 /pmc/articles/PMC6969867/ /pubmed/31776696 http://dx.doi.org/10.1007/s00421-019-04266-8 Text en © The Author(s) 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Vassallo, Christian
Gray, Adrian
Cummins, Cloe
Murphy, Aron
Waldron, Mark
Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title_full Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title_fullStr Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title_full_unstemmed Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title_short Exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
title_sort exercise tolerance during flat over-ground intermittent running: modelling the expenditure and reconstitution kinetics of work done above critical power
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6969867/
https://www.ncbi.nlm.nih.gov/pubmed/31776696
http://dx.doi.org/10.1007/s00421-019-04266-8
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