Deprez Dieter, Valente-Dos-Santos Joao, Coelho E Silva Manuel, Lenoir Matthieu, Philippaerts Renaat M, Vaeyens Roel
Dept of Movement and Sports Sciences, Ghent University, Ghent, Belgium.
Int J Sports Physiol Perform. 2014 Nov;9(6):1006-12. doi: 10.1123/ijspp.2013-0368. Epub 2014 Mar 19.
To model the development of soccer-specific aerobic performance, assessed by the Yo-Yo Intermittent Recovery Test Level 1 in 162 elite pubertal soccer players, age 11-14 y at baseline.
Longitudinal multilevel modeling analyses comprised predictors related to growth (chronological age, body size [height and weight] and composition [fat mass, fat-free mass]), and motor coordination [3 KÖrperkoordination Test für Kinder subtests: jumping sideways, moving sideways, backward balancing] and estimated biological-maturation groups (earliest [<percentile 33] and latest maturers [>percentile 66]).
The best-fitting model on soccer-specific aerobic performance could be expressed as -3639.76 + 369.86 × age + 21.38 × age² + 9.12 × height - 29.04 × fat mass + 0.06 × backward balance. Maturity groups had a negligible effect on soccer-specific aerobic performance (-45.32 ± 66.28; P > .05).
The current study showed that the development of aerobic performance in elite youth soccer is related to growth and muscularity and emphasized the importance of motor coordination in the talent-identification and -development process. Note that biological maturation was excluded from the model, which might endorse the homogeneity in estimated biological-maturation status in the current elite pubertal soccer sample.
对162名精英青春期足球运动员(基线年龄11 - 14岁)的足球专项有氧能力发展进行建模,通过Yo-Yo间歇恢复测试1级进行评估。
纵向多水平建模分析包括与生长相关的预测因素(实足年龄、身体大小[身高和体重]及组成[脂肪量、去脂体重])、运动协调性[3项儿童身体协调性测试子测试:侧向跳跃、侧向移动、向后平衡]以及估计的生物成熟组(最早成熟者[<第33百分位数]和最晚成熟者[>第66百分位数])。
足球专项有氧能力的最佳拟合模型可表示为-3639.76 + 369.86×年龄 + 21.38×年龄² + 9.12×身高 - 29.04×脂肪量 + 0.06×向后平衡。成熟组对足球专项有氧能力的影响可忽略不计(-45.32 ± 66.28;P >.05)。
当前研究表明,精英青少年足球运动员有氧能力的发展与生长和肌肉发达程度有关,并强调了运动协调性在人才识别和发展过程中的重要性。请注意,生物成熟度被排除在模型之外,这可能支持了当前精英青春期足球样本中估计的生物成熟状态的同质性。