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Francisco J. Amaro-Gahete, Lucas Jurado-Fasoli, Alejandro R. Triviño, Guillermo Sanchez-Delgado, Alejandro De-la-O, Jørn W. Helge and Jonatan R. Ruiz

.01460 30405428 10.3389/fphys.2018.01460 19. Lucía A , Hoyos J , Chicharro JL . The slow component of VO 2 in professional cyclists . Br J Sports Med . 2000 ; 34 : 367 – 374 . doi:10.1136/bjsm.34.5.367 11049147 10.1136/bjsm.34.5.367 20. Frayn KN . Calculation of substrate oxidation rates in vivo

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knowledge of nutrition for supporting performance. The Effects of Short-Term High Intensity Interval Training on Resting Metabolic Rate, Substrate Oxidation and Body Composition MM Atakan, ŞN Koşar, Y Güzel, S Bulut, HH Turnagöl Nutrition and Metabolism in Exercise Division, Faculty of Sport Sciences

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Monica Klungland Torstveit, Ida Fahrenholtz, Thomas B. Stenqvist, Øystein Sylta and Anna Melin

013e318149f111 Phelain , J.F. , Reinke , E. , Harris , M.A. , & Melby , C.L. ( 1997 ). Postexercise energy expenditure and substrate oxidation in young women resulting from exercise bouts of different intensity . The Journal of the American College of Nutrition, 16 , 140 – 146 . 10

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Rachel B. Parks, Hector F. Angus, Douglas S. King and Rick L. Sharp

, R.L. ( 2007 ). Effect of preexercise ingestion of modified cornstarch on substrate oxidation during endurance exercise . International Journal of Sport Nutrition and Exercise Metabolism, 17 ( 3 ), 232 – 243 . PubMed doi:10.1123/ijsnem.17.3.232 10.1123/ijsnem.17.3.232 Jozsi , A.C. , Trappe

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Ulrika Andersson-Hall, Stefan Pettersson, Fredrik Edin, Anders Pedersen, Daniel Malmodin and Klavs Madsen

). Calculation of substrate oxidation rates in vivo from gaseous exchange . Journal of Applied Physiology: Respiratory, Environmental and Exercise Physiology, 55 ( 2 ), 628 – 634 . 10.1152/jappl.1983.55.2.628 Galgani , J.E. , Moro , C. , & Ravussin , E. ( 2008 ). Metabolic flexibility and insulin

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Matthew I. Black, Joseph C. Handsaker, Sam J. Allen, Stephanie E. Forrester and Jonathan P. Folland

of substrate oxidation during exercise by means of gas exchange measurements . Int J Sports Med . 2005 ; 26 : S28 – S37 . PubMed doi:10.1055/s-2004-830512 15702454 10.1055/s-2004-830512 26. Ralston HJ . Energy-speed relation and optimal speed during level walking . Int Z Angew Physiol . 1958

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Ana B. Peinado, Nuria Romero-Parra, Miguel A. Rojo-Tirado, Rocío Cupeiro, Javier Butragueño, Eliane A. Castro, Francisco J. Calderón and Pedro J. Benito

: the key role of crank inertial load . J Biomech . 2009 ; 42 : 171 – 177 . PubMed doi:10.1016/j.jbiomech.2008.10.008 19041974 10.1016/j.jbiomech.2008.10.008 26. Frayn KN . Calculation of substrate oxidation rates in vivo from gaseous exchange . J Appl Physiol Respir Environ Exerc Physiol . 1983

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David M. Shaw, Fabrice Merien, Andrea Braakhuis, Daniel Plews, Paul Laursen and Deborah K. Dulson

). Effect of acute ingestion of β-hydroxybutyrate salts on the response to graded exercise in trained cyclists . European Journal of Sport Science, 45 ( 1 ), 1 – 11 . doi:10.1080/17461391.2017.1421711 Frayn , K.N. ( 1983 ). Calculation of substrate oxidation rates in vivo from gaseous exchange

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Tiago Turnes, Rogério S.O. Cruz, Fabrizio Caputo and Rafael A. De Aguiar

affecting the rate of substrate oxidation. 42 , 43 Indeed, elevated plasma-free fatty acid at rest 7 and submaximal exercise and reduced respiratory exchange ratio at rest 9 were observed. However, in addition to no alterations in these variables after maximal exercise, improvements in 2000-m test seem

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Nicki Winfield Almquist, Gertjan Ettema, James Hopker, Øyvind Sandbakk and Bent R. Rønnestad

) increases VO 2 in untrained to highly trained subjects. 5 , 6 , 29 Together with this gradually declining GE, we found an increased VE and RPE during exercise in both conditions, whereas no changes in respiratory exchange ratio, as an indicator of substrate oxidation, occurred. There are likely multiple