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以年轻足球运动员短跑测试为例评估改良波浪周期化模型的效率

The Evaluation of the Modified Wave Periodization Model Efficiency on the Example of Young Soccer Players' Sprint Tests.

作者信息

Szymanek-Pilarczyk Marta, Nowak Michał Jakub, Góra Tomasz, Oleksy Łukasz, Drozd Miłosz, Wąsik Jacek

机构信息

Faculty of Physical Culture Sciences, Jan Dlugosz University in Częstochowa, Czestochowa, Poland.

Faculty of Physical Culture Sciences, Collegium Medicum im. dr. Władysława Biegańskiego, Jan Dlugosz University in Częstochowa, Częstochowa, Poland.

出版信息

J Hum Kinet. 2024 Sep 26;94:215-226. doi: 10.5114/jhk/191699. eCollection 2024 Oct.

Abstract

The research aimed to evaluate the modified model of wave periodization efficiency in running speed tests conducted among soccer players aged 12 to 16. Participants included prospective players of a leading Polish top league soccer club. The research was carried out from 2018 to 2022 in June (Testing A) and December (Testing B) of each year. The test involved 30-m straight line running with 5-, 10-, and 30-m split time measurements. For this purpose, electronic photocells were used (FITLIGHT, Canada). The six-month training intervention increased the athletes' speed as there was a considerable decrease in the running time over the distance of 5 m (F = 7.86; p < 0.001), 10 m (F = 73.99; p < 0.001) and 30 m (F = 127.55; p < 0.001). Analysis of running performance of young soccer players aged 12-16 showed a significant improvement in speed at distances of 5, 10 and 30 m, confirming training effectiveness based on the wave periodization model. The negative correlation between testing year and performance suggests the influence of biological development on players' speed. The COVID-19 pandemic has impacted training, which was reflected in reduced differences between test scores. Improving initial running technique can contribute to better match results, which emphasizes the need for an individual approach to the physical preparation of players.

摘要

该研究旨在评估在12至16岁足球运动员的跑步速度测试中,改进后的波浪周期化效率模型。参与者包括波兰顶级联赛一家领先足球俱乐部的未来球员。该研究于2018年至2022年每年的6月(测试A)和12月(测试B)进行。测试包括30米直线跑,并测量5米、10米和30米的分段时间。为此,使用了电子光电管(加拿大FITLIGHT)。为期六个月的训练干预提高了运动员的速度,因为在5米(F = 7.86;p < 0.001)、10米(F = 73.99;p < 0.001)和30米(F = 127.55;p < 0.001)的距离上跑步时间有显著减少。对12至16岁年轻足球运动员跑步表现的分析表明,在5米、10米和30米的距离上速度有显著提高,证实了基于波浪周期化模型的训练效果。测试年份与表现之间的负相关表明生物发育对球员速度的影响。COVID-19大流行影响了训练,这反映在测试分数之间的差异减小。改进初始跑步技术有助于取得更好的比赛成绩,这强调了对球员体能准备采取个性化方法的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db65/11571460/ac23533dfc55/JHK-94-191699-g001.jpg

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