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首页> 外文期刊>European Journal of Applied Physiology >Scaling lower-limb isokinetic strength for biological maturation and body size in adolescent basketball players
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Scaling lower-limb isokinetic strength for biological maturation and body size in adolescent basketball players

机译:缩放下肢等速力量以适应青少年篮球运动员的生物成熟度和体型

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摘要

The relationships between knee joint isokinetic strength, biological maturity status and body size were examined in 14–16-year-old basketball players, considering proportional allometric modeling. Biological maturity status was assessed with maturity offset protocol. Stature, body mass, sitting height, and estimated thigh volume were measured by anthropometry. Maximal moments of force of concentric and eccentric muscular actions for the knee extensors and flexors were assessed by isokinetic dynamometry at 60° s−1. Regression analysis revealed a linear relation between maximal moments of force of the knee extensors in both muscular actions and knee flexors in concentric actions were moderately high (0.55 ≤ r ≤ 0.64). As for knee flexors in eccentric actions, a squared term of maturity indicator was significant indicating that the relationship with maturity offset tended to plateau approximately 2 years after PHV. Incorporating maturity indicator term with body size term (body mass or thigh volume) in the allometric models revealed that the size exponents for both body mass and thigh volume were reduced compared with simple allometric modeling. The results indicate a significant inter-individual variation in lower-limb isokinetic strength performance at 60° s−1 in concentric and eccentric muscular actions in late adolescent basketball players. The variability in performance is related to inter-individual variation in estimated time before or after peak height velocity, as well as differences in body size. Proportional allometric models indicate that the influence of estimated time from age at peak height velocity on isokinetic strength performance is mostly mediated by corresponding changes in overall body mass.
机译:在14-16岁的篮球运动员中,研究了膝关节等速肌力,生物成熟度状态与体型之间的关系,并考虑了比例等速模型。使用成熟度补偿方案评估生物成熟度状态。通过人体测量法测量身高,体重,坐高和估计的大腿体积。通过等速测力法在60°s-1 下评估膝关节伸肌和屈肌同心和偏心肌肉动作的最大力矩。回归分析显示,在肌肉动作和同心动作中,膝屈肌的最大伸肌力矩之间的线性关系中等(0.55≤r≤0.64)。至于偏心动作中的膝屈肌,成熟度的平方指标是很重要的,表明与PHV大约2年后,与成熟度偏移的关系趋于平稳。将成熟度指标项与体重计模型(体重或大腿体积)相结合,发现与简单的过敏计模型相比,体重和大腿体积的大小指数均减小。结果表明,青少年后期篮球运动员在同心和偏心肌肉动作中,下肢等速力量表现在60°s-1 上存在明显的个体差异。表现的差异与峰高速度前后的估计时间之间的个体差异以及身体大小的差异有关。比例等速模型表明,从峰高速度到年龄的估计时间对等速肌力表现的影响主要是由整体体重的相应变化所介导的。

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