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Microdosing Plyometric Training Enhances Jumping Performance, Reactive Strength Index, and Acceleration among Youth Soccer Players: A Randomized Controlled Study Design.

Guiyang Liu, Xiaoshuang Wang, Qi Xu

Journal of Sports Science and Medicine June 1, 2024 DOI: 10.52082/jssm.2024.342 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

Both microdosing plyometric jump training (spreading a small number of jumps across four weekly sessions) and regular plyometric jump training (more jumps in two weekly sessions) equally improved jumping performance, reactive strength, and 10-meter sprint acceleration in male youth soccer players. After eight weeks, both training groups outperformed a control group that did no plyometric training, while no significant differences emerged between the two training approaches. A smaller training volume distributed more frequently across the week can effectively enhance athletic performance.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 52
Population Male youth soccer players (under-17 teams, mean age 16.3 years)
Interventions Microdosing plyometric jump training Regular plyometric jump training
Duration 8-week intervention
Keywords Medicine Education
Citations 21
Key finding Microdosed and regular plyometric jump training were equally effective in improving jumping performance and acceleration, with both surpassing the control group.

Abstract

Microdosing can facilitate better accommodation to the training stimulus while aligning with the scheduling needs of teams. In this study, the effectiveness of microdosing exposure was investigated by comparing the effects of microdosing plyometric jump training (microPJT) with those of regular plyometric jump training (regPJT) and a control group not exposed to plyometric training. The comparison focused on the effects on jumping performance, reactive strength index (RSI), and acceleration over a 10-meter distance. Fifty-two male youth soccer players (16.3 ± 0.6 years old) from under-17 teams participated in a randomized controlled study, with interventions lasting 8 weeks. Assessments were conducted twice, before and after the intervention, measuring squat jump (SJ), countermovement jump (CMJ), RSI during drop jumps, and acceleration in a 10-meter sprint test. The regPJT group completed 34 bilateral jumps and 48 unilateral jumps per week over two weekly sessions, totaling 82 jumps. Conversely, the microPJT group performed 17 bilateral jumps and 24 unilateral jumps weekly over 4 sessions week, totaling 41 jumps. Significant interactions between groups and time were observed concerning SJ (p < 0.001; η2= 0.282), CMJ (p < 0.001; η2= 0.368), RSI (p < 0.001; η2= 0.400) and 10-m sprint time (p < 0.001; η2 = 0.317). Between-group analysis indicated that both the microPJT (p < 0.001) and regPJT (p < 0.001) groups exhibited significant better results compared to the control group in post-intervention evaluation of SJ, CMJ, RSI and 10-m sprint time, while no significant differences were found between experimental groups (p > 0.050). In conclusion, this study has revealed that both microPJT and regPJT are equally effective in enhancing jumping performance and acceleration time in soccer players. This suggests that a smaller training volume, distributed more frequently across the week, can effectively induce improvements in soccer players.

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