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Metabolic and Fatigue Profiles Are Comparable Between Prepubertal Children and Well-Trained Adult Endurance Athletes

机译:青春期前的孩子和训练有素的成人耐力运动员之间的代谢和疲劳状况可比

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摘要

The aim of this study was to determine whether prepubertal children are metabolically comparable to well-trained adult endurance athletes and if this translates into similar fatigue rates during high-intensity exercise in both populations. On two different occasions, 12 prepubertal boys (10.5 ± 1.1 y), 12 untrained men (21.2 ± 1.5 y), and 13 endurance male athletes (21.5 ± 2.7 y) completed an incremental test to determine the power output at VO2max (PVO2max) and a Wingate test to evaluate the maximal anaerobic power (Pmax) and relative decrement in power output (i.e., the fatigue index, FI). Furthermore, oxygen uptake (VO2), heart rate (HR), and capillary blood lactate concentration ([La]) were measured to determine (i) the net aerobic contribution at 5-s intervals during the Wingate test, and (ii) the post-exercise recovery kinetics of VO2, HR, and [La]. The Pmax-to-PVO2max ratio was not significantly different between children (1.9 ± 0.5) and endurance athletes (2.1 ± 0.2) but lower than untrained men (3.2 ± 0.3, p < 0.001 for both). The relative energy contribution derived from oxidative metabolism was also similar in children and endurance athletes but greater than untrained men over the second half of the Wingate test (p < 0.001 for both). Furthermore, the post-exercise recovery kinetics of VO2, HR, and [La] in children and endurance athletes were faster than those of untrained men. Finally, FI was comparable between children and endurance athletes (−35.2 ± 9.6 vs. −41.8 ± 9.4%, respectively) but lower than untrained men (−51.8 ± 4.1%, p < 0.01). To conclude, prepubertal children were observed to be metabolically comparable to well-trained adult endurance athletes, and were thus less fatigable during high-intensity exercise than untrained adults.
机译:这项研究的目的是确定青春期前儿童在代谢上是否与训练有素的成年耐力运动员具有可比性,以及这是否在两个人群的高强度运动中转化为相似的疲劳率。在两种不同的情况下,有12名青春期前男孩(10.5±1.1 y),12名未经训练的男子(21.2±1.5y)和13名耐力男运动员(21.5±2.7y)完成了增量测试,以确定最大摄氧量(PVO2max)的输出功率进行Wingate测试以评估最大无氧功率(P​​max)和功率输出的相对减量(即疲劳指数FI)。此外,测量摄氧量(VO2),心率(HR)和毛细血管血乳酸浓度(La),以确定(i)Wingate测试期间每隔5 s的净有氧贡献,以及(ii)运动后VO2,HR和[La]的恢复动力学。儿童(1.9±0.5)和耐力运动员(2.1±0.2)之间的Pmax与PVO2max比率无显着差异,但低于未经培训的男性(两者均为3.2±0.3,p <0.001)。在儿童和耐力运动员中,由氧化代谢产生的相对能量贡献也相似,但在Wingate测试的后半段中,这比未经训练的男人要大(两者均p <0.001)。此外,儿童和耐力运动员的VO2,HR和[La]运动后恢复动力学比未经训练的男子快。最后,儿童和耐力运动员之间的FI值相当(分别为−35.2±9.6和−41.8±9.4%),但低于未经训练的男性(−51.8±4.1%,p <0.01)。总之,观察到青春期前儿童在代谢上与训练有素的成年耐力运动员相当,因此与未训练的成年后相比,在高强度运动中的病因较轻。

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