Effect of the Depth of Cold Water Immersion on Sleep Architecture and Recovery Among Well-Trained Male Endurance Runners
Chauvineau M, Pasquier F, Guyot V, Aloulou A, Nedelec M
Frontiers in sports and active living · 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
- 2021-03-31 · Front Sports Act Living · vol. 3 · p. 659990
- Publisher
- Frontiers Media
- Cited
- 18 citations · more than 83% of similar papers · 1.8× the field average
- References
- 64 works
- Access
- Open access (journal) · CC-BY
- Research areas
- Sports Performance and Training · Cardiovascular and exercise physiology · Exercise and Physiological Responses
- Keywords
- Treadmill, Medicine, Polysomnography, Isometric exercise, Animal science, Mathematics, Chemistry, Internal medicine, Biology
5 authors
From FR
- Maxime ChauvineauInstitut National du Sport, de l'Expertise et de la Performance
- Florane PasquierInstitut National du Sport, de l'Expertise et de la Performance
- Vincent GuyotInstitut National du Sport, de l'Expertise et de la Performance
- Anis AloulouInstitut National du Sport, de l'Expertise et de la Performance
- Mathieu Nédélec · correspondingInstitut National du Sport, de l'Expertise et de la Performance
Abstract
Introduction: The aim of the present study was to investigate the effect of the depth of cold water immersion (CWI) (whole-body with head immersed and partial-body CWI) after high-intensity, intermittent running exercise on sleep architecture and recovery kinetics among well-trained runners. Methods: In a randomized, counterbalanced order, 12 well-trained male endurance runners ( V . O2max = 66.0 ± 3.9 ml·min-1·kg-1) performed a simulated trail (≈18:00) on a motorized treadmill followed by CWI (13.3 ± 0.2°C) for 10 min: whole-body immersion including the head (WHOLE; n = 12), partial-body immersion up to the iliac crest (PARTIAL; n = 12), and, finally, an out-of-water control condition (CONT; n = 10). Markers of fatigue and muscle damage-maximal voluntary isometric contraction (MVIC), countermovement jump (CMJ), plasma creatine kinase [CK], and subjective ratings-were recorded until 48 h after the simulated trail. After each condition, nocturnal core body temperature (T core) was measured, whereas sleep and heart rate variability were assessed using polysomnography. Results: There was a lower T core induced by WHOLE than CONT from the end of immersion to 80 min after the start of immersion (p p p p p p > 0.05) throughout the 48-h recovery period. Conclusion: WHOLE reduced arousal and limb movement and enhanced SWS proportion during the first part of the night, which may be particularly useful in the athlete's recovery process after exercise. Future studies are, however, required to assess whether such positive sleep outcomes may result in overall recovery optimization.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).
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