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高低海拔地区男孩的力量-速度测试和30秒温盖特测试。

Force-velocity and 30-s Wingate tests in boys at high and low altitudes.

作者信息

Bedu M, Fellmann N, Spielvogel H, Falgairette G, Van Praagh E, Coudert J

机构信息

Laboratoire de Physiologie, Faculté de Médecine, Clermont-Ferrand, France.

出版信息

J Appl Physiol (1985). 1991 Mar;70(3):1031-7. doi: 10.1152/jappl.1991.70.3.1031.

Abstract

The effects of high altitude (HA, 3,700 m) on performance during a force-velocity test (maximal anaerobic power, MAnP) and a 30-s Wingate test (mean power, P) were studied in boys 7-15 yr of age. Forty-seven children acclimatized to HA were compared with 101 living at low altitude (LA, 330 m). They had the same good nutritional status and the same level of physical activities [average 5.4 +/- 1.1 (SD) and 5.2 +/- 1.9 h/wk at HA and LA, respectively]. They performed the two tests using the same calibrated cycle ergometer. For the Wingate test, O2 uptake (VO2) during the 30 s and the peak of blood lactate concentration ([L]p) during the recovery were also measured. No difference in MAnP was observed between HA and LA. P, [L]p, and VO2 were lower at HA. This suggests that the altitude of 3,700 m did not affect the performance of the force-velocity test but reduced that of the Wingate test. This decrease in P was linked to a lower participation of glycolysis and aerobic metabolism. The latter is related to a reduced aerobic performance at HA. In addition, the slopes of the relationships between age and MAnP, P, and [L]p were the same at HA and LA, indicating that chronic hypoxia did not alter the development of the anaerobic metabolism during puberty.

摘要

本研究探讨了高海拔(HA,3700米)对7至15岁男孩进行力量-速度测试(最大无氧功率,MAnP)和30秒温盖特测试(平均功率,P)时运动表现的影响。将47名适应高海拔环境的儿童与101名生活在低海拔(LA,330米)的儿童进行比较。他们具有相同良好的营养状况和相同的体育活动水平[在高海拔和低海拔地区分别平均为5.4±1.1(标准差)和5.2±1.9小时/周]。他们使用相同校准的自行车测力计进行这两项测试。对于温盖特测试,还测量了30秒内的摄氧量(VO2)以及恢复期间血乳酸浓度峰值([L]p)。在高海拔和低海拔地区之间未观察到最大无氧功率的差异。高海拔地区的平均功率、血乳酸浓度峰值和摄氧量较低。这表明3700米的海拔高度不会影响力量-速度测试的表现,但会降低温盖特测试的表现。平均功率的这种降低与糖酵解和有氧代谢的参与度较低有关。后者与高海拔地区有氧能力的降低有关。此外,高海拔和低海拔地区年龄与最大无氧功率、平均功率和血乳酸浓度峰值之间关系的斜率相同,表明慢性缺氧不会改变青春期无氧代谢的发展。

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