不同长度微循环的外部负荷以及与青少年足球比赛奔跑表现的关系。

Yiannis Michailidis, Vasileios Kanaras, Athanasios Mandroukas, Andreas Stafylidis, Charalampos Bamplekis, Andreas Fousekis, Lazaros Vardakis, Konstantinos Stamatelos, Ioannis Metaxas, Angelos E Kyranoudis, Thomas I Metaxas
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引用次数: 0

摘要

本研究旨在探讨:a) 四节训练课(MIC4)和五节训练课(MIC5)的微循环期间外部负荷(EL)的差异;b) 每周训练负荷与随后比赛负荷的比率;c) 探讨 MIC4 或 MIC5 的 EL 与足球运动员在随后比赛中的跑步表现之间可能存在的相关性。这项研究涉及 20 名精英青少年足球运动员,他们来自当年获得该组别冠军的球队(年龄为 16.4 ± 0.3 岁)。在 8 MIC4 和 10 MIC5 中,通过 GPS 对 EL 进行了跟踪。随后的比赛中的跑步表现也被记录在案。采用两两方差分析来比较 MIC5 和 MIC4 的参数,并采用皮尔逊相关检验来研究训练负荷参数之间的潜在相关性。结果显示,MIC5 在 4 区和 5 区的距离参数、总距离和减速方面的外部负荷明显更大。在比赛中,仅加速(p = 0.028)和减速(p = 0.02)的跑步表现存在差异。与 MIC5 相比,MIC4 在所有参数上的训练/比赛负荷比都较低,但超过了比赛负荷。加速度和减速度出现了较大的负相关。总之,MIC5 的额外训练会增加负荷,但不会影响比赛中的跑步表现。应注意加速度和减速度,因为在训练中使用小型比赛很容易增加它们的运动量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
External Load of Different Length Microcycles and Relationships with Match Running Performance in Youth Football.

The purpose of this study was to investigate: a) the differences in external load (EL) during microcycles with four (MIC4) and five training (MIC5) sessions, b) to explore the ratio of weekly training load to the load of the subsequent match, and c) to explore possible correlations between the EL of the MIC4 or MIC5 with the running performance of football players in the following match. The study involved 20 elite youth football players from a team that won the championship in their category that year (age, 16.4 ± 0.3 years). The EL was tracked via GPS in 8 MIC4 and 10 MIC5. Running performance in subsequent matches was also recorded. Two by two ANOVA was employed to compare parameters between MIC5 and MIC4 and Pearson correlation test was applied to examine potential correlations between the training load parameters. The results showed that MIC5 had significantly greater external load in distance parameters in zones 4 & 5, total distance, and decelerations. Differences in running performance in matches were observed only for accelerations (p = .028) and decelerations (p = .02). The ratio of training/match load was lower in all parameters in MIC4 compared to MIC5 but exceeded the match load. Large negative correlations were observed for accelerations and decelerations. In conclusion, additional training in MIC5 increases the load without affecting running performance in the match. Attention should be given to accelerations and decelerations, as their volume can easily increase with the use of small-sided games in training.

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