Wallis Gareth A, Rowlands David S, Shaw Christopher, Jentjens Roy L P G, Jeukendrup Asker E
School of Sport and Exercise Sciences, University of Birmingham, Edgbaston, Birmingham, UNITED KINGDOM.
Med Sci Sports Exerc. 2005 Mar;37(3):426-32. doi: 10.1249/01.mss.0000155399.23358.82.
To determine whether combined ingestion of maltodextrin and fructose during 150 min of cycling exercise would lead to exogenous carbohydrate oxidation rates higher than 1.1 g.min.
Eight trained cyclists VO2max: 64.1 +/- 3.1 mL.kg.min) performed three exercise trials in a random order. Each trial consisted of 150 min cycling at 55% maximum power output (64.2+/-3.5% VO2max) while subjects received a solution providing either 1.8 g.min of maltodextrin (MD), 1.2 g.min of maltodextrin + 0.6 g.min of fructose (MD+F), or plain water. To quantify exogenous carbohydrate oxidation, corn-derived MD and F were used, which have a high natural abundance of C.
Peak exogenous carbohydrate oxidation (last 30 min of exercise) rates were approximately 40% higher with combined MD+F ingestion compared with MD only ingestion (1.50+/-0.07 and 1.06+/-0.08 g.min, respectively, P<0.05). Furthermore, the average exogenous carbohydrate oxidation rate during the last 90 min of exercise was higher with combined MD+F ingestion compared with MD alone (1.38+/-0.06 and 0.96+/-0.07 g.min, respectively, P<0.05).
The present study demonstrates that with ingestion of large amounts of maltodextrin and fructose during cycling exercise, exogenous carbohydrate oxidation can reach peak values of approximately 1.5 g.min, and this is markedly higher than oxidation rates from ingesting maltodextrin alone.
确定在150分钟的骑行运动中同时摄入麦芽糊精和果糖是否会导致外源性碳水化合物氧化速率高于1.1克/分钟。
八名训练有素的自行车运动员(最大摄氧量:64.1±3.1毫升/千克·分钟)以随机顺序进行了三项运动试验。每项试验包括在最大功率输出的55%(64.2±3.5%最大摄氧量)下骑行150分钟,同时受试者接受提供1.8克/分钟麦芽糊精(MD)、1.2克/分钟麦芽糊精+0.6克/分钟果糖(MD+F)或纯水的溶液。为了量化外源性碳水化合物氧化,使用了玉米衍生的MD和F,它们具有较高的天然碳丰度。
与仅摄入MD相比,同时摄入MD+F时的外源性碳水化合物氧化峰值(运动最后30分钟)速率高出约40%(分别为1.50±0.07和1.06±0.08克/分钟,P<0.05)。此外,与单独摄入MD相比,同时摄入MD+F时运动最后90分钟的平均外源性碳水化合物氧化速率更高(分别为1.38±0.06和0.96±0.07克/分钟,P<0.05)。
本研究表明,在骑行运动中摄入大量麦芽糊精和果糖时,外源性碳水化合物氧化可达到约1.5克/分钟的峰值,这明显高于仅摄入麦芽糊精时的氧化速率。