Study2019

Cold water immersion improves recovery of sprint speed following a simulated tournament

Leeder JDC, Godfrey M, Gibbon D, Gaze D, Davison GW, Van Someren KA, Howatson G

European journal of sport science · 19 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

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
Funding not disclosed

Publication

Published
2019-04-06 · Eur J Sport Sci · vol. 19 · issue 9 · pp. 1166–1174
Publisher
Taylor & Francis
Cited
27 citations · more than 86% of similar papers · 2.0× the field average
References
33 works
Access
Paywalled
Research areas
Exercise and Physiological Responses · Sports injuries and prevention · Sports Performance and Training
Keywords
Tournament, Sprint, Muscle damage, Creatine kinase, Medicine, Physical therapy, Internal medicine, Mathematics
MeSH
muscle, skeletal, humans, creatine kinase, c-reactive protein, interleukin-6, immersion, recovery of function, oxidative stress, running, adolescent, male, cold temperature, young adult, athletes, myalgia, biomarkers

7 authors

From GB, ZA

  • Jonathan Leeder · correspondingEnglish Institute of Sport; Northumbria University
  • Matthew GodfreyNorthumbria University
  • Daniel GibbonNorthumbria University
  • David C. GazeUniversity of Westminster
  • Gareth W. DavisonUniversity of Ulster
  • Ken A. van SomerenNorthumbria University

Abstract

It is a common requirement in tournament scenarios for athletes to compete multiple times in a relatively short time period, with insufficient recovery time not allowing full restoration of physical performance. This study aimed to develop a greater understanding of the physiological stress experienced by athletes in a tournament scenario, and how a commonly used recovery strategy, cold water immersion (CWI), might influence these markers. Twenty-one trained male games players (age 19 ± 2; body mass 78.0 ± 8.8 kg) were randomised into a CWI group (n = 11) or a control group (n = 10). To simulate a tournament, participants completed the Loughborough Intermittent Shuttle Test (LIST) on three occasions in five days. Recovery was assessed at specific time points using markers of sprint performance, muscle function, muscle soreness and biochemical markers of damage (creatine kinase, CK), inflammation (IL-6 and C-Reactive Protein) and oxidative stress (lipid hydroperoxides and activity of 6 lipid-soluble antioxidants). The simulated tournament was associated with perturbations in some, but not all, markers of physiological stress and recovery. Cold water immersion was associated with improved recovery of sprint speed 24 h after the final LIST (ES = 0.83 ± 0.59; p = .034) and attenuated the efflux of CK pre- and post-LIST 3 (p < .01). The tournament scenario resulted in an escalation of physiological stress that, in the main, cold water immersion was ineffective at managing. These data suggest that CWI is not harmful, and provides limited benefits in attenuating the deleterious effects experienced during tournament scenarios.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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