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儿童生长过程中运动的有氧参数与体型的关系。

Aerobic parameters of exercise as a function of body size during growth in children.

作者信息

Cooper D M, Weiler-Ravell D, Whipp B J, Wasserman K

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1984 Mar;56(3):628-34. doi: 10.1152/jappl.1984.56.3.628.

Abstract

To examine the relationship between body weight in children and aerobic parameters of exercise, we determined the anaerobic threshold (AT), maximum O2 uptake (VO2max), work efficiency, and response time for O2 uptake (RT-VO2) in 109 healthy children (51 girls and 58 boys, range 6-17 yr old) using a cross-sectional study design. Gas exchange during exercise was measured breath by breath. The protocol consisted of cycle ergometry and a linearly increasing work rate (ramp) to the limit of the subject's tolerance. Both AT and VO2max increased systematically with body weight, whereas work efficiency and RT-VO2 were virtually independent of body size. The ratio of AT to VO2max decreased slightly with age, and its mean value was 60%. AT scaled to body weight to the power of 0.92, not significantly different from the power of 1.01 for VO2max. Thus both the AT and the VO2max increase in a highly ordered manner with increasing size, and as judged by AT/VO2max, the onset of anaerobic metabolism during exercise occurred at a relatively constant proportion of the overall limit of the gas transport system. We conclude that in children cardiorespiratory responses to exercise are regulated at optimized values despite overall change in body size during growth.

摘要

为了研究儿童体重与运动有氧参数之间的关系,我们采用横断面研究设计,测定了109名健康儿童(51名女孩和58名男孩,年龄范围6 - 17岁)的无氧阈(AT)、最大摄氧量(VO2max)、工作效率和摄氧量反应时间(RT-VO2)。运动过程中的气体交换逐 breath 进行测量。实验方案包括自行车测力计测试和以线性方式增加工作负荷(斜坡式)直至受试者耐受极限。AT和VO2max均随体重系统性增加,而工作效率和RT-VO2实际上与体型无关。AT与VO2max的比值随年龄略有下降,其平均值为60%。AT与体重的比例关系为体重的0.92次幂,与VO2max的1.01次幂无显著差异。因此,AT和VO2max均随着体型增大以高度有序的方式增加,并且通过AT/VO2max判断,运动过程中无氧代谢的起始发生在气体运输系统总体极限的相对恒定比例处。我们得出结论,在儿童中,尽管生长过程中体型总体发生变化,但心肺对运动的反应仍被调节至最佳值。

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