Effects of acute sleep deprivation and caffeine supplementation on anaerobic performance

Purpose Athletes involved in team sports may be subject to varying degrees of sleep deprivation either before or after training and competition. Despite the belief among athletes and coaches of the importance of adequate sleep for ensuing performance, the effect of sleep loss on team-sport anaerobic performance remains unclear. There is conflicting evidence in the scientific literature as to the impact of acute sleep deprivation and caffeine supplementation on anaerobic performance indices. The purpose of this study is to investigate the effect of 24 hours of acute sleep deprivation on anaerobic performance and the effect of caffeine supplementation on anaerobic performance in the sleep deprived state. Methods 11 club level games players (n=11, 25±4 yr, 178±7.5 cm, 80.2±10.4 kg, 15.1±5.6% body fat) participated in a repeated measures double-blinded placebo control trial. Following familiarisation, each participant returned for testing on three separate occasions. One of the testing sessions took place following a night of normal sleep and the other two sessions took place following 24 hours of sleep deprivation with supplementation of either placebo or 6 mg.kg- 1 of caffeine. During each testing session participants performed the vertical jump height, 20-m straight sprint, Illinois speed agility test and 5-m shuttle run. Results No significant differences were detected comparing non sleep deprived and sleep deprived interventions in any of the assessed outcome measures. There were also no significant differences observed in any of the outcome measures when comparing caffeine and placebo data in the sleep deprived state. Conclusion In this cohort of athletes, a 24-h period of acute sleep deprivation did not have any significant impact on anaerobic performance. Caffeine also did not have any effect of on anaerobic performance in the sleep-deprived state.

[1]  H. Chtourou,et al.  The effects of caffeine ingestion on the reaction time and short-term maximal performance after 36h of sleep deprivation , 2014, Physiology & Behavior.

[2]  C. Beaven,et al.  Acute caffeine ingestion's increase of voluntarily chosen resistance-training load after limited sleep. , 2012, International journal of sport nutrition and exercise metabolism.

[3]  M. Sahebozamani,et al.  Acute Effect of Different Stretching Methods on Illinois Agility Test in Soccer Players , 2010, Journal of strength and conditioning research.

[4]  J. Green,et al.  Caffeine and Anaerobic Performance , 2009, Sports medicine.

[5]  G. G. Haff,et al.  THE ACUTE EFFECTS OF TWENTY‐FOUR HOURS OF SLEEP LOSS ON THE PERFORMANCE OF NATIONALCALIBER MALE COLLEGIATE WEIGHTLIFTERS , 2007, Journal of strength and conditioning research.

[6]  Nicholas A Ratamess,et al.  EFFECT OF NUTRITIONALLY ENRICHED COFFEE CONSUMPTION ON AEROBIC AND ANAEROBICEXERCISE PERFORMANCE , 2007, Journal of strength and conditioning research.

[7]  T. Housh,et al.  THE ACUTE EFFECTS OF A CAFFEINE‐CONTAINING SUPPLEMENT ON STRENGTH,MUSCULAR ENDURANCE, AND ANAEROBIC CAPABILITIES , 2006, Journal of strength and conditioning research.

[8]  D. Bishop,et al.  Effects of caffeine on prolonged intermittent-sprint ability in team-sport athletes. , 2006, Medicine and science in sports and exercise.

[9]  T. Balkin,et al.  Performance and alertness effects of caffeine, dextroamphetamine, and modafinil during sleep deprivation , 2005, Journal of sleep research.

[10]  A. Gauthier,et al.  Effects of one night's sleep deprivation on anaerobic performance the following day , 2003, European Journal of Applied Physiology.

[11]  W. Hopkins,et al.  Little effect of caffeine ingestion on repeated sprints in team-sport athletes. , 2001, Medicine and science in sports and exercise.

[12]  M. Tarnopolsky Caffeine and Endurance Performance , 1994, Sports medicine.