Cold Water Immersion Improves the Recovery of Both Central and Peripheral Fatigue Following Simulated Soccer Match-Play
Bouchiba M, Bragazzi NL, Zarzissi S, Turki M, Zghal F, Grati MA, Daab W, Ayadi F, Rebai H, Ibn Hadj Amor H, Hureau TJ, Bouzid MA
Frontiers in physiology · 11 citations
How it was studied
- Design
- Randomized controlled trial (classified by our AI screen)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
Based on full-text disclosure statement.
Publication
- Published
- 2022-08-15 · Front Physiol · vol. 13 · p. 860709
- Publisher
- Frontiers Media
- Cited
- 22 citations · more than 89% of similar papers · 2.4× the field average
- References
- 45 works
- Access
- Open access (journal) · CC-BY
- Research areas
- Sports Performance and Training · Sports injuries and prevention · Exercise and Physiological Responses
- Keywords
- Sprint, Medicine, Squat, Creatine kinase, Lactate dehydrogenase, Stretch shortening cycle, Anesthesia, Cardiology, Physical therapy, Internal medicine, Physical medicine and rehabilitation, Jumping, Chemistry
12 authors
From TN, CA, FR
- Mustapha BouchibaUniversity of Sfax
- Nicola Luigi Bragazzi · correspondingYork University
- Slim ZarzissiUniversity of Sfax
- Mouna Damak TurkiHopital Universitaire Habib Bourguiba
- Firas ZghalUniversity of Sfax; Université Côte d'Azur; Cognition Behaviour Technology
- Mohamed Amine GratiHopital Universitaire Habib Bourguiba
Abstract
The present study aimed to investigate the effect of cold water immersion (CWI) on the recovery of neuromuscular fatigue following simulated soccer match-play. In a randomized design, twelve soccer players completed a 90-min simulated soccer match followed by either CWI or thermoneutral water immersion (TWI, sham condition). Before and after match (immediately after CWI/TWI through 72 h recovery), neuromuscular and performance assessments were performed. Maximal voluntary contraction (MVC) and twitch responses, delivered through electrical femoral nerve stimulation, were used to assess peripheral fatigue (quadriceps resting twitch force, Qtw,pot) and central fatigue (voluntary activation, VA). Performance was assessed via squat jump (SJ), countermovement jump (CMJ), and 20 m sprint tests. Biomarkers of muscle damages (creatine kinase, CK; Lactate dehydrogenase, LDH) were also collected. Smaller reductions in CWI than TWI were found in MVC (-9.9 ± 3%vs-23.7 ± 14.7%), VA (-3.7 ± 4.9%vs-15.4 ± 5.6%) and Qtw,pot (-15.7 ± 5.9% vs. -24.8 ± 9.5%) following post-match intervention (p tw,pot (-0.2 ± 7.7% vs. -8.8 ± 9.6%) at 72 h post-match. Afterwards, these parameters remained lower compared to baseline up to 48-72 h in TWI while they all recovered within 24 h in CWI. The 20 m sprint performance was less impaired in CWI than TWI (+11.1 ± 3.2% vs. +18 ± 3.6%, p < 0.05) while SJ and CMJ were not affected by the recovery strategy. Plasma LDH, yet no CK, were less increased during recovery in CWI compared to TWI. This study showed that CWI reduced both central and peripheral components of fatigue, which in turn led to earlier full recovery of the neuromuscular function and performance indices. Therefore, CWI might be an interesting recovery strategy for soccer players.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).
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