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首页> 外文期刊>BioMed research international >Peak Oxygen Uptake Responses to Training in Obese Adolescents: A Multilevel AHometric Framework to Partition the Influence of Body Size and Maturity Status
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Peak Oxygen Uptake Responses to Training in Obese Adolescents: A Multilevel AHometric Framework to Partition the Influence of Body Size and Maturity Status

机译:肥胖青少年训练中的最高摄氧量响应:划分体重和成熟状态影响的多层次AHometric框架

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The influence of body size and maturation on the responses in peak oxygen uptake (VO_2) to a 12-week aerobic training and nutritional intervention in obese boys (n = 30; 10-16 years) was examined using multilevel allometric regressions. Anthropometry, sexual maturity status, peak VO_2, and body composition were measured pre- and postintervention. Significant decrements for body mass, body mass index z-score, and waist circumference and increments for stature, fat-free mass, and peak oxygen uptake were observed after intervention. Partitioning body size on peak VO_2, the responses of the individuals to training were positive (11.8% to 12.7% for body mass; 7.6% to 8.1% for fat-free mass). Body mass and fat-free mass were found as significant explanatory variables, with an additional positive effect for chronological. The allometric coefficients (k') in the initial models were k = 0.883 and k' = 1.058 for body mass and fat-free mass, respectively. The coefficients decreased when age was considered (k' = 0.530 for body mass; k' = 0.860 for fat-free mass). Including maturity indicator in the models was not significant, thus the influence of variability in sexual maturity status in responses to exercise-based intervention in peak VO_2 may be mediated by the changes in body dimensions.
机译:使用多级Allometric回归分析了肥胖男孩(n = 30; 10-16岁)的12周有氧训练和营养干预对最大摄氧量(VO_2)响应的体形和成熟度的影响。干预前后测量人体测量学,性成熟状态,VO_2峰值和身体组成。干预后,观察到体重,z得分和腰围,体重,体重,身材,无脂肪体重和最大摄氧量均显着下降。在VO_2峰上分配体重,个体对训练的反应为阳性(体重为11.8%至12.7%;无脂体重为7.6%至8.1%)。体重和无脂肪体重被认为是重要的解释变量,并对时间顺序产生额外的积极影响。初始模型中的体重系数(k')对于体重和无脂肪体重分别为k = 0.883和k'= 1.058。当考虑年龄时,系数降低(体重'k'= 0.530;无脂肪体重k'= 0.860)。在模型中包括成熟度指标并不显着,因此,基于运动干预的峰值VO_2对性成熟度状态变化的影响可能是由于身体尺寸的变化而介导的。

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