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在控制青少年篮球运动员的体型和成熟度后,无氧功率的年龄相关变化。

Age-related variation of anaerobic power after controlling for size and maturation in adolescent basketball players.

作者信息

Carvalho Humberto M, Coelho-e-Silva Manuel J, Gonçalves Carlos E, Philippaerts Renaat M, Castagna Carlo, Malina Robert M

机构信息

University of Coimbra, Coimbra, Portugal.

出版信息

Ann Hum Biol. 2011 Nov;38(6):721-7. doi: 10.3109/03014460.2011.613852. Epub 2011 Sep 19.

Abstract

BACKGROUND

Adolescence is characterized by increments in body size and physical performance. Short bursts of maximal intensity, requiring anaerobic metabolism, are important in many team sports including basketball.

AIM

Variation of anaerobic power of adolescent basketball players (n = 93, 14-16 years) in relation to years before and after estimated age at peak height velocity (PHV) and variation in body size was considered.

METHODS

The cross-sectional study included chronological age, estimated age at PHV, training experience; stature, body mass (BM), free-fat mass (FFM) and estimated lower-limb volume (LLV) by anthropometry; and short-term power outputs derived from the Wingate Anaerobic Test (WAnT). Based on proportional allometric modeling, power outputs were partitioned for biological maturity status and size variables. Pearson correlations were used to estimate the associations between distance to PHV (maturity offset) and training experience with absolute and scaled estimates of short-term power.

RESULTS

Absolute WAnT increased linearly (PP, r = 0.72; MP, r = 0.74) through the interval of rapid growth of the adolescent spurt. Increments were related mainly to BM and muscle mass. Nevertheless, a residual significant positive influence of chronological age per se on maximal short-term power outputs remained independent of body size.

CONCLUSION

Allometric modelling to partition size may reveal other potentially meaningful factors in the development of short-term performance in adolescent athletes.

摘要

背景

青春期的特点是身体尺寸和体能的增加。在包括篮球在内的许多团队运动中,需要无氧代谢的短时间最大强度爆发很重要。

目的

研究青少年篮球运动员(n = 93,14 - 16岁)在预计身高速度峰值(PHV)前后几年的无氧功率变化以及身体尺寸的变化。

方法

横断面研究包括实际年龄、预计的PHV年龄、训练经历;通过人体测量法测量身高、体重(BM)、去脂体重(FFM)和估计的下肢体积(LLV);以及从温盖特无氧测试(WAnT)得出的短期功率输出。基于比例异速生长模型,将功率输出按生物成熟状态和尺寸变量进行划分。使用Pearson相关性来估计距PHV的距离(成熟偏移)与训练经历与短期功率的绝对和缩放估计值之间的关联。

结果

在青春期快速生长期间,绝对WAnT呈线性增加(PP,r = 0.72;MP,r = 0.74)。增加主要与体重和肌肉量有关。然而,实际年龄本身对最大短期功率输出仍有显著的残余正向影响,且独立于身体尺寸。

结论

用于划分尺寸的异速生长模型可能揭示青少年运动员短期表现发展中的其他潜在有意义的因素。

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