Abstract
Sleep is recognised as an essential component of an athlete’s
preparation and recovery, yet many struggle to meet the
minimum recommended hours. While cognitive functions,
particularly executive functions, are also essential for athletic
performance, the impact of sleep deprivation on the executive
functions of athletes remains underexplored. Therefore, we
examined the impact of total sleep deprivation on athletes’ core
executive functions. A total of 49 athletes (M = 22.27 years, SD =
2.2, 51% female) performed behavioural measures of working
memory, response inhibition, and cognitive flexibility after 24 h of
sleep deprivation and a habitual night of sleep (M = 451 min, SD
= 65 min). Our findings revealed that only cognitive flexibility
(total time; pHolm = .003) and response inhibition (reaction time;
pHolm = .025) were significantly affected by sleep deprivation,
whereas working memory (pHolm = .283) and the accuracy
component of response inhibition (pHolm = .133) remained stable.
Furthermore, the effects of sleep deprivation were not
significantly moderated by PSQI score, age, or gender. The
absence of further effects may be explained by the use of
cognitive compensatory mechanisms that provide alternative
processes, allowing athletes to adapt to disruptions or deficits.
preparation and recovery, yet many struggle to meet the
minimum recommended hours. While cognitive functions,
particularly executive functions, are also essential for athletic
performance, the impact of sleep deprivation on the executive
functions of athletes remains underexplored. Therefore, we
examined the impact of total sleep deprivation on athletes’ core
executive functions. A total of 49 athletes (M = 22.27 years, SD =
2.2, 51% female) performed behavioural measures of working
memory, response inhibition, and cognitive flexibility after 24 h of
sleep deprivation and a habitual night of sleep (M = 451 min, SD
= 65 min). Our findings revealed that only cognitive flexibility
(total time; pHolm = .003) and response inhibition (reaction time;
pHolm = .025) were significantly affected by sleep deprivation,
whereas working memory (pHolm = .283) and the accuracy
component of response inhibition (pHolm = .133) remained stable.
Furthermore, the effects of sleep deprivation were not
significantly moderated by PSQI score, age, or gender. The
absence of further effects may be explained by the use of
cognitive compensatory mechanisms that provide alternative
processes, allowing athletes to adapt to disruptions or deficits.
| Translated title of the contribution | The effect of total sleep deprivation on executive functions in athletes |
|---|---|
| Original language | German |
| Journal | International Journal of Sport and Exercise Psychology |
| Volume | 2026 |
| Pages (from-to) | 1-20 |
| Number of pages | 20 |
| ISSN | 1612-197X |
| Publication status | Published - 02.2026 |
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