Research Institute for Sport & Exercise Sciences, Liverpool John Moores University, Henry Cotton Campus, Webster Street, Liverpool, L3 2ET, UK.
Eur J Appl Physiol. 2011 Sep;111(9):2105-14. doi: 10.1007/s00421-011-1838-y. Epub 2011 Feb 1.
Carbohydrate stores within muscle are considered essential as a fuel for prolonged endurance exercise, and regimes for enhancing such stores have proved successful in aiding performance. This study explored the effects of a hyperglycaemic-hyperinsulinemic clamp performed 18 h previously on subsequent prolonged endurance performance in cycling. Seven male subjects, accustomed to prolonged endurance cycling, performed 90 min of cycling at ~65% VO(2max) followed by a 16-km time trial 18 h after a 2-h hyperglycemic-hyperinsulinemic clamp (HCC). Hyperglycemia (10 mM) with insulin infused at 300 mU/m(2)/min over a 2-h period resulted in a total glucose uptake of 275 g (assessed by the area under the curve) of which glucose storage accounted for about 73% (i.e. 198 g). Patterns of substrate oxidation during 90-min exercise at 65% VO(2max) were not altered by HCC. Blood glucose and plasma insulin concentrations were higher during exercise after HCC compared with control (p < 0.05) while plasma NEFA was similar. Exercise performance was improved by 49 s and power output was 10-11% higher during the time trial (p < 0.05) after HCC. These data suggest that carbohydrate loading 18 h previously by means of a 2-h HCC improves cycling performance by 3.3% without any change in pattern of substrate oxidation.
肌肉中的碳水化合物储存被认为是进行长时间耐力运动的重要燃料,并且已经证明增强这些储存的方法在提高运动表现方面是成功的。本研究探讨了 18 小时前进行的高血糖-高胰岛素血症钳夹对随后进行的长时间耐力自行车运动的影响。7 名习惯于长时间耐力自行车运动的男性受试者进行了 90 分钟的自行车运动,运动强度约为最大摄氧量的 65%,然后在 2 小时高血糖-高胰岛素血症钳夹(HCC)后 18 小时进行了 16 公里计时赛。在 2 小时内以 300 mU/m(2)/min 的速度输注胰岛素导致血糖升高至 10 mM,从而导致总葡萄糖摄取量为 275 g(通过曲线下面积评估),其中葡萄糖储存量约占 73%(即 198 g)。在 65%VO(2max)的 90 分钟运动期间,HCC 并未改变底物氧化的模式。与对照相比,HCC 后运动期间的血糖和血浆胰岛素浓度更高(p < 0.05),而血浆 NEFA 则相似。HCC 后,运动表现提高了 49 秒,计时赛期间的功率输出提高了 10-11%(p < 0.05)。这些数据表明,18 小时前通过 2 小时 HCC 进行碳水化合物负荷可将自行车运动表现提高 3.3%,而不会改变底物氧化模式。