Anaerobic energy expenditure and mechanical efficiency during exhaustive leg press exercise

Information about anaerobic energy production and mechanical efficiency that occurs over time during short-lasting maximal exercise is scarce and controversial. Bilateral leg press is an interesting muscle contraction model to estimate anaerobic energy production and mechanical efficiency during max...

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Veröffentlicht in:PloS one 2010-10, Vol.5 (10), p.e13486-e13486
Hauptverfasser: Gorostiaga, Esteban M, Navarro-Amézqueta, Ion, Cusso, Roser, Hellsten, Ylva, Calbet, Jose A L, Guerrero, Mario, Granados, Cristina, González-Izal, Miriam, Ibáñez, Javier, Izquierdo, Mikel
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Sprache:eng
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Zusammenfassung:Information about anaerobic energy production and mechanical efficiency that occurs over time during short-lasting maximal exercise is scarce and controversial. Bilateral leg press is an interesting muscle contraction model to estimate anaerobic energy production and mechanical efficiency during maximal exercise because it largely differs from the models used until now. This study examined the changes in muscle metabolite concentration and power output production during the first and the second half of a set of 10 repetitions to failure (10RM) of bilateral leg press exercise. On two separate days, muscle biopsies were obtained from vastus lateralis prior and immediately after a set of 5 or a set of 10 repetitions. During the second set of 5 repetitions, mean power production decreased by 19% and the average ATP utilisation accounted for by phosphagen decreased from 54% to 19%, whereas ATP utilisation from anaerobic glycolysis increased from 46 to 81%. Changes in contraction time and power output were correlated to the changes in muscle Phosphocreatine (PCr; r = -0.76; P
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0013486