Angus R Teece, Christopher M Beaven, Christos K Argus, Nicholas Gill, Matthew W Driller
Journal: Sleep 2023;46(12):zsad133
PMID: 37155971
Insufficient sleep duration has been demonstrated to impact performance, causing decrements in physical performance, negatively affecting mood. Therefore, strategies that can increase total daily sleep may allow for the maintenance of training loads. This study aimed to investigate the effect of a daytime nap (less than 1 hour) on afternoon peak power, reaction time, self-reported wellness, and aerobic performance in professional rugby union athletes. This study was a randomised cross-over trial involving 15 professional rugby union athletes. Each athlete participated in both nap and no nap conditions, separated by one week. Results showed that a short nap of around 35 minutes, resulted in an increase in afternoon peak power production, reduced self-reported fatigue, less general muscle soreness, and lowered perceived exertion during afternoon training compared to not taking a nap between sessions. Authors concluded that napping may support recovery between training sessions on the same day and may provide positive effects on afternoon performance amongst professional rugby union athletes.
Daytime naps are used by elite athletes in both training and match-day settings. Currently, there are limited interventional studies on the efficacy of napping on physical performance in elite team-sport athletes. Therefore, the objective was to investigate the effect of a daytime nap (<1 hour) on afternoon performance of peak power, reaction time, self-reported wellness, and aerobic performance in professional rugby union athletes. A randomized cross-over design was carried out among 15 professional rugby union athletes. Athletes performed nap (NAP) and no nap (CON) conditions on two occasions, separated by 1 week. Baseline testing of reaction time, self-reported wellness, and a 6-second peak power test on a cycle ergometer were completed in the morning, followed by 2 × 45-minute training sessions, after which athletes completed the NAP or CON condition at 1200 hours. Following the nap period, baseline measures were retested in addition to a 30-minute fixed-intensity interval cycle and a 4-minute maximal effort cycling test. A significant group × time interaction was determined for 6-second peak power output (+157.6 W, p < 0.01, d = 1.53), perceived fatigue (-0.2 AU, p = 0.01, d = 0.37), and muscle soreness (-0.1 AU, p = 0.04, d = 0.75) in favor of the NAP condition. A significantly lower perceived exertion rating (-1.2 AU, p < 0.01, d = 1.72) was recorded for the fixed-intensity session in favor of NAP. This study highlights that utilizing daytime naps between training sessions on the same day improved afternoon peak power and lowered perceptions of fatigue, soreness, and exertion during afternoon training in professional rugby union athletes.
© The Author(s) 2023. Published by Oxford University Press on behalf of Sleep Research Society.
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