Perceptual and Biochemical Responses in Relation to Different Match-Day +2 Training Interventions in Soccer Players

The aim of this study was to examine the impact of two different post-match training interventions on the subsequent recovery of perceptual and biochemical parameters after the game. In a crossover design, eight sub-elite players underwent a soccer-specific training (SST) and an active recovery (AR)...

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Veröffentlicht in:Frontiers in physiology 2021-06, Vol.12, p.685804-685804
Hauptverfasser: Trecroci, Athos, Perri, Enrico, Lombardi, Giovanni, Banfi, Giuseppe, Del Vescovo, Riccardo, Rosa, Ermes M, Alberti, Giampietro, Iaia, F Marcello
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Sprache:eng
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Zusammenfassung:The aim of this study was to examine the impact of two different post-match training interventions on the subsequent recovery of perceptual and biochemical parameters after the game. In a crossover design, eight sub-elite players underwent a soccer-specific training (SST) and an active recovery (AR) regimen on the second day after a match (+48 h). Muscle soreness as well as muscle damage (creatine kinase, CK), inflammatory (C-reactive protein and interleukin 6), immunological (e.g., lymphocytes, neutrophils, and monocytes), and endocrine (cortisol) markers were obtained at baseline (-72 h), immediately after (0 h), and 72 h post-match (+72 h). AR promoted a higher restoration of muscle soreness values ( = 0.004, η = 0.49) together with a better restoration of CK within 72 h post-match compared with SST ( = 0.04, η = 0.36). Conversely, no significant ( > 0.05, η < 0.91) differences were observed in the recovery timeframe of inflammatory, immunological, and endocrine responses between SST and AR. Overall, AR elicited a quicker muscle soreness and CK restoration compared to SST intervention at 72 h post-match. Such information provides novel evidence-based findings on the appropriateness of different recovery strategies and may aid to improve the practitioners' decision-making process when two consecutive games are played within 3 days.
ISSN:1664-042X
1664-042X
DOI:10.3389/fphys.2021.685804