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青少年足球运动员的纤维类型组成与短跑表现的相关性。

Correlation of Fiber-Type Composition and Sprint Performance in Youth Soccer Players.

机构信息

Department of Physical Education and Sports Science, Laboratory of Evaluation of Human Biological Performance, Aristotle University of Thessaloniki, Thessaloniki, Greece.

Faculty of Physical Education and Sport, Department of Division of Sport, Charles University, Prague, Czech Republic.

出版信息

J Strength Cond Res. 2019 Oct;33(10):2629-2634. doi: 10.1519/JSC.0000000000003320.

Abstract

Metaxas, T, Mandroukas, A, Michailidis, Y, Koutlianos, N, Christoulas, K, and Ekblom, B. Correlation of fiber-type composition and sprint performance in youth soccer players. J Strength Cond Res 33(10): 2629-2634, 2019-The aim of this study was to examine the correlation between muscle fiber type and sprint performance in elite young soccer players of different age groups of the same team. Twenty-eight young players participated in this study (group U15, n = 8; group U13, n = 9; and group U11, n = 11). Anthropometric assessments, acceleration (10 m), and Bangsbo modified sprint test (30 m) were performed. Muscle biopsies were obtained from the vastus lateralis, and after that, fiber-type composition was determined by immunohistochemistry. No significant correlations were found between the sprint test and muscle fiber distribution for the groups U13 and U11 (p > 0.05). Also, no correlations were found between cross-sectional areas in the types of fibers with the sprint test in all groups (p > 0.05). A positive correlation was found between type I fibers and the performance in the acceleration test (10 m) (r = 0.77, p < 0.05) was found only in group U15 and a negative correlation between type IIA fibers and the performance in the acceleration test (10 m) (r = -0.89, p < 0.05). The correlations were observed only in group U15, which may indicate that the duration and the intensity of the soccer systematic training can affect the plasticity of the muscle fibers. Specific soccer training in youth is one of the factors that can affect fiber-type plasticity. The specific training programs and status of U15 are more intensive, and the exercises are oriented more to improve physical fitness.

摘要

梅塔克萨斯、T、曼卓拉斯、A、米哈利季斯、Y、库特利奥斯、N、克里斯特拉科斯、K 和埃克布洛姆、B. 纤维类型组成与青年足球运动员短跑表现的相关性。J 力量与条件研究 33(10):2629-2634,2019-本研究旨在探讨同一支球队不同年龄组的精英年轻足球运动员肌肉纤维类型与短跑表现之间的相关性。28 名年轻球员参加了这项研究(组 U15,n = 8;组 U13,n = 9;组 U11,n = 11)。进行了人体测量评估、加速度(10 m)和邦斯博改良短跑测试(30 m)。从股外侧肌获取肌肉活检,然后通过免疫组织化学法确定纤维型组成。在 U13 和 U11 组中,短跑测试与肌肉纤维分布之间没有发现显著相关性(p > 0.05)。此外,在所有组中,纤维类型的横截面积与短跑测试之间也没有发现相关性(p > 0.05)。仅在 U15 组中发现 I 型纤维与加速度测试(10 m)表现呈正相关(r = 0.77,p < 0.05),而在 U15 组中发现 IIA 型纤维与加速度测试(10 m)表现呈负相关(r = -0.89,p < 0.05)。相关性仅在 U15 组中观察到,这可能表明足球系统训练的持续时间和强度会影响肌肉纤维的可塑性。青年足球的专项训练是影响纤维型可塑性的因素之一。U15 的专项训练计划和状态更加密集,练习更倾向于提高身体素质。

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