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Original Article

Brain Substrate Utilization during Prolonged Exercise

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Pages 397-402 | Received 01 Dec 1971, Accepted 20 Mar 1972, Published online: 08 Jul 2009

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William T. Chance, Ramesh Dayal, Lou Ann Friend & J. Howard James. (2004) Elevated Blood Lactate Is Not a Primary Cause of Anorexia in Tumor-Bearing Rats. Nutrition and Cancer 48:2, pages 174-181.
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A. Juhlin Dannfelt. (1977) Ethanol effects of substrate utilization by the human brain. Scandinavian Journal of Clinical and Laboratory Investigation 37:5, pages 443-449.
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Articles from other publishers (24)

S. Howard Wittels, Eric Renaghan, Michael Joseph Wishon, Harrison L. Wittels, Stephanie Chong, Eva Danielle Wittels, Stephanie Hendricks, Dustin Hecocks, Kyle Bellamy, Joe Girardi, Stephen Lee, Samantha McDonald & Luis A. Feigenbaum. (2023) Recovery of the autonomic nervous system following football training among division I collegiate football athletes: The influence of intensity and time. Heliyon 9:7, pages e18125.
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Étienne Myette-Côté, Adrian Soto-Mota & Stephen C. Cunnane. (2021) Ketones: potential to achieve brain energy rescue and sustain cognitive health during ageing. British Journal of Nutrition 128:3, pages 407-423.
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Hamid Mohebbi, Iain T. Campbell, Marie A. Keegan, James J. Malone, Andrew T. Hulton & Don P. M. MacLaren. (2019) Hyperinsulinaemia and hyperglycaemia promote glucose utilization and storage during low- and high-intensity exercise. European Journal of Applied Physiology 120:1, pages 127-135.
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Brian S. Ferguson, Matthew J. Rogatzki, Matthew L. Goodwin, Daniel A. Kane, Zachary Rightmire & L. Bruce Gladden. (2018) Lactate metabolism: historical context, prior misinterpretations, and current understanding. European Journal of Applied Physiology 118:4, pages 691-728.
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Yijia Zhang, Pengcheng Xun, Ru Wang, Lijuan Mao & Ka He. (2017) Can Magnesium Enhance Exercise Performance?. Nutrients 9:9, pages 946.
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Hsuan-Ying Chen, Fu-Chou Cheng, Huan-Chuan Pan, Jaw-Cheng Hsu & Ming-Fu Wang. (2014) Magnesium Enhances Exercise Performance via Increasing Glucose Availability in the Blood, Muscle, and Brain during Exercise. PLoS ONE 9:1, pages e85486.
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Mads K Dalsgaard. (2005) Fuelling Cerebral Activity in Exercising Man. Journal of Cerebral Blood Flow & Metabolism 26:6, pages 731-750.
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Jukka Kemppainen, Sargo Aalto, Toshihiko Fujimoto, Kari K. Kalliokoski, Jaakko Långsjö, Vesa Oikonen, Juha Rinne, Pirjo Nuutila & Juhani Knuuti. (2005) High intensity exercise decreases global brain glucose uptake in humans. The Journal of Physiology 568:1, pages 323-332.
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Mads K. Dalsgaard, Bjørn Quistorff, Else R. Danielsen, Christian Selmer, Thomas Vogelsang & Niels H. Secher. (2004) A reduced cerebral metabolic ratio in exercise reflects metabolism and not accumulation of lactate within the human brain. The Journal of Physiology 554:2, pages 571-578.
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Mads K. Dalsgaard, Kojiro Ide, Yan Cai, Bjørn Quistorff & Niels H. Secher. (2002) The intent to exercise influences the cerebral O 2 /carbohydrate uptake ratio in humans . The Journal of Physiology 540:2, pages 681-689.
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Kojiro Ide & Niels H. Secher. (2000) Cerebral blood flow and metabolism during exercise. Progress in Neurobiology 61:4, pages 397-414.
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Kojiro Ide, Ina K. Schmalbruch, Bjørn Quistorff, Allan Horn & Niels H. Secher. (2000) Lactate, glucose and O 2 uptake in human brain during recovery from maximal exercise . The Journal of Physiology 522:1, pages 159-164.
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Kojiro Ide, Allan Horn & Niels H. Secher. (1999) Cerebral metabolic response to submaximal exercise. Journal of Applied Physiology 87:5, pages 1604-1608.
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Bernard R. Landau. (2007) Glycerol production and utilization measured using stable isotopes. Proceedings of the Nutrition Society 58:4, pages 973-978.
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S. F. PrevisS. K. MartinJ. W. HazeyM. V. SolovievA. P. KeatingD. LucasF. DavidJ. KoshyD. W. KirschenbaumK. Y. TserngH. Brunengraber. (1996) Contributions of liver and kidneys to glycerol production and utilization in the dog. American Journal of Physiology-Endocrinology and Metabolism 271:6, pages E1118-E1124.
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B. R. LandauJ. WahrenS. F. PrevisK. EkbergV. ChandramouliH. Brunengraber. (1996) Glycerol production and utilization in humans: sites and quantitation. American Journal of Physiology-Endocrinology and Metabolism 271:6, pages E1110-E1117.
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Helmut Roskamm & Herbert ReindellJ. Keul & C. Holubarsch. 1989. Herzkrankheiten. Herzkrankheiten 101 110 .
Veikko A. Koivisto, Hanele Yki‐Järvinen & Ralph A. DeFronzo. (2009) Physical training and insulin sensitivity. Diabetes/Metabolism Reviews 1:4, pages 445-481.
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Ralph A. Defronzo, Eleuterio Ferrannini & Veikko Koivisto. (1983) New concepts in the pathogenesis and treatment of noninsulin-dependent diabetes mellitus. The American Journal of Medicine 74:1, pages 52-81.
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Daniel Thiébaud, Ralph A. DeFronzo, Eric Jacot, Alain Golay, Kevin Acheson, Evelyne Maeder, Eric Jéquier & Jean-Pierre Felber. (1982) Effect of long chain triglyceride infusion on glucose metabolism in man. Metabolism 31:11, pages 1128-1136.
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Helmut Roskamm & Herbert ReindellJ. Keul. 1982. Herzkrankheiten. Herzkrankheiten 102 109 .
H. Stjernstrom, L. Jorfeldt & L. Wiklund. (2008) Influence of Abdominal Surgical Trauma on Substrate Utilization by the Human Brain. Acta Anaesthesiologica Scandinavica 25:3, pages 222-227.
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John Wahren. (1977) GLUCOSE TURNOVER DURING EXERCISE IN MAN. Annals of the New York Academy of Sciences 301:1 The Marathon, pages 45-55.
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Howard L. Bleich, Emily S. Boro, Philip Felig & John Wahren. (1975) Fuel Homeostasis in Exercise. New England Journal of Medicine 293:21, pages 1078-1084.
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