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Hydration Efficiency of a Protein Beverage Consumed in a Bolus vs. Metered Pattern during Recovery

机译:在恢复期间在推注中消耗的蛋白质饮料的水合效率

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International Journal of Exercise Science 13(2): 1476-1486, 2020. This study compared hydration efficiency of a carbohydrate-protein (CHO-PRO) beverage consumed in a bolus (BOL) vs. a metered (MET) drinking pattern during recovery from exercise induced hypohydration. Participants (n = 10) lost 2 - 2.5% of body mass from sweating during a morning exercise session. Participants were then assigned to either consume a carbohydrate/electrolyte/protein beverage in a bolus (BOL) or metered incremental consumption (MET) (counterbalanced) pattern post exercise. Total rehydration beverage administered during recovery equaled 125% of fluid lost during exercise. BOL was administered within the first hour of recovery, MET was administered 25% during the first 30 min, then 12.5% every 30 min for the next 4 hours. Mean (±SD) intake was 2475 ± 324 mL (MET) and 2525 ± 293 mL (BOL) (p = 0.22). Mean urine production was significantly greater for BOL (1167 ml ± 293 ml) than MET (730 ml ± 324 ml) (p = 0.003). Hydration efficiency (fluid ingested vs. fluid retained as percent) was significantly greater for MET (69.1 ± 15.4) than BOL (53.7 ± 9.7) (p = 0.004). Results indicate that, across a ~ 6-hour recovery, a metered drinking pattern improves fluid retention and therefore, hydration efficiency when a carbohydrate-protein beverage is consumed. More research is needed in paradigms characterized by unlimited fluid availability.
机译:国际运动科学杂志13(2):1476-1486,2020。该研究在推注(BOL)中消耗的碳水化合物 - 蛋​​白(CHO-Pro)饮料的水合效率与复苏期间的计量(遇见)饮用模式从运动诱导的溶解。参与者(n = 10)在早晨运动会期间出汗失去2-2.5%的体重。然后将参与者分配给推注(BOL)或计量增量消耗(MET)(Contract Balance)模式后运动中的碳水化合物/电解质/蛋白饮料。在恢复过程中施用的总补液饮料等于运动期间损失的125%。在回收的第一小时内施用BOL,在前30分钟期间举行25%,然后每30分钟施用25%,在接下来的4小时内每30分钟给药。平均值(±SD)进气量为2475±324 mL(MET)和2525±293ml(BOL)(P = 0.22)。 BOL(1167ml±293ml)的平均尿液产生明显大于MET(730ml±324ml)(p = 0.003)。对于MET(69.1±15.4)(53.7±9.7)(P = 0.004),水合效率(保留为百分比的百分比的流体为百分比)显着更大。结果表明,在〜6小时恢复,计量饮用模式可提高流体保留,因此,消耗碳水化合物 - 蛋​​白饮料时的水合效率。根据无限流体可用性的特征在于宗旨,需要更多研究。

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