Literature DB >> 21793766

Nutrition for power sports: middle-distance running, track cycling, rowing, canoeing/kayaking, and swimming.

Trent Stellingwerff1, Ronald J Maughan, Louise M Burke.   

Abstract

Contemporary training for power sports involves diverse routines that place a wide array of physiological demands on the athlete. This requires a multi-faceted nutritional strategy to support both general training needs--tailored to specific training phases--as well as the acute demands of competition. Elite power sport athletes have high training intensities and volumes for most of the training season, so energy intake must be sufficient to support recovery and adaptation. Low pre-exercise muscle glycogen reduces high-intensity performance, so daily carbohydrate intake must be emphasized throughout training and competition phases. There is strong evidence to suggest that the timing, type, and amount of protein intake influence post-exercise recovery and adaptation. Most power sports feature demanding competition schedules, which require aggressive nutritional recovery strategies to optimize muscle glycogen resynthesis. Various power sports have different optimum body compositions and body weight requirements, but increasing the power-to-weight ratio during the championship season can lead to significant performance benefits for most athletes. Both intra- and extracellular buffering agents may enhance performance, but more research is needed to examine the potential long-term impact of buffering agents on training adaptation. Interactions between training, desired physiological adaptations, competition, and nutrition require an individual approach and should be continuously adjusted and adapted.

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Year:  2011        PMID: 21793766     DOI: 10.1080/02640414.2011.589469

Source DB:  PubMed          Journal:  J Sports Sci        ISSN: 0264-0414            Impact factor:   3.337


  29 in total

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2.  Nutritional practices of athletes in oman: a descriptive study.

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Review 3.  Overtraining Syndrome (OTS) and Relative Energy Deficiency in Sport (RED-S): Shared Pathways, Symptoms and Complexities.

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5.  High Rates of Fat Oxidation Induced by a Low-Carbohydrate, High-Fat Diet, Do Not Impair 5-km Running Performance in Competitive Recreational Athletes.

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6.  High Energetic Demand of Elite Rowing - Implications for Training and Nutrition.

Authors:  Kay Winkert; Juergen M Steinacker; Karsten Koehler; Gunnar Treff
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7.  Body composition changes in physically active individuals consuming ketogenic diets: a systematic review.

Authors:  Julie L Coleman; Christopher T Carrigan; Lee M Margolis
Journal:  J Int Soc Sports Nutr       Date:  2021-06-05       Impact factor: 5.150

Review 8.  The Use of Bovine Colostrum in Sport and Exercise.

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Journal:  Nutrients       Date:  2021-05-24       Impact factor: 5.717

9.  The Dynamics of the Anaerobic Energy Contribution During a Simulated Mass-Start Competition While Roller-Ski Skating on a Treadmill.

Authors:  Dionne A Noordhof; Marius Lyng Danielsson; Knut Skovereng; Jørgen Danielsen; Trine M Seeberg; Pål Haugnes; Jan Kocbach; Gertjan Ettema; Øyvind B Sandbakk
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10.  A comparison of medley and freestyle performance for national and international swimmers between 1994 and 2011.

Authors:  Christof Buhl; Beat Knechtle; Christoph Alexander Rüst; Thomas Rosemann; Romuald Lepers
Journal:  Open Access J Sports Med       Date:  2013-03-26
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