Carbohydrate Utilization and Disposal in Strength/Power Training and Sports: Examining the Underexamined




52.

Symons JD, Jacobs I. High-intensity exercise performance is not impaired by low intramuscular glycogen. Med Sci Sports Exerc. 1989;21:550–7.CrossRefPubMed


53.

Balsom PD, Gaitanos GC, Soderlund K, Ekblom B. High-intensity exercise and muscle glycogen availability in humans. Acta Physiol Scand. 1999;165:337–45.CrossRefPubMed


54.

Phinney SD, Bistrian BR, Evans WJ, Gervino E, Blackburn GL. The human metabolic response to chronic ketosis without caloric restriction: preservation of submaximal exercise capability with reduced carbohydrate oxidation. Metabolism. 1983;32:769–76.CrossRefPubMed


55.

Lambert EV, Speechly DP, Dennis SC, Noakes TD. Enhanced endurance in trained cyclists during moderate intensity exercise following 2 weeks adaptation to a high fat diet. Eur J Appl Physiol Occup Physiol. 1994;69:287–93.CrossRefPubMed


56.

Havemann L, West SJ, Goedecke JH, Macdonald IA, St Clair Gibson A, Noakes TD, et al. Fat adaptation followed by carbohydrate loading compromised high-intensity sprint performance. J Appl Physiol. 2006;100:194–202.CrossRefPubMed


57.

Fleming J, Sharman MJ, Avery NG, Love DM, Gomez AL, Scheett TP, et al. Endurance capacity and high-intensity exercise performance responses to a high fat diet. Int J Sport Nutr Exerc Metab. 2003;13:466–78.PubMed

Oct 16, 2016 | Posted by in SPORT MEDICINE | Comments Off on Carbohydrate Utilization and Disposal in Strength/Power Training and Sports: Examining the Underexamined

Full access? Get Clinical Tree

Get Clinical Tree app for offline access