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Daily Associations between Salivary Cortisol and EEG-Assessed Sleep: A 15-Day Intensive Longitudinal Study.
Sleep 2024 April 9
STUDY OBJECTIVES: Current evidence suggests that cortisol levels are bi-directionally associated with sleep. However, the daily, naturalistic cortisol-sleep associations remain unclear, as current evidence is mostly cross-sectional. This study tested whether pre-sleep cortisol predicts sleep duration and quality, and whether these sleep parameters predict the following day's diurnal cortisol slope using a 15-day intensive longitudinal design with electroencephalographic measures and saliva sampling.
METHODS: Ninety-five young adults (Mage=20.48±1.59 years) provided saliva samples at awakening and pre-sleep over 14 consecutive days, providing 2,345 samples (85% viable). The Z-Machine Insight+ was used to record over 900 nights of total sleep time (TST) and sleep efficiency (SE). Multilevel models tested these data at the between- and within-person levels.
RESULTS: Higher pre-sleep cortisol predicted shorter TST (p<.001) and lower SE (p<.001) at the within-person level. Individuals with shorter average TST (p =.007) or lower average SE (p<.001) had flatter diurnal cortisol slope, compared to those with longer average TST or higher average SE. Follow up analyses showed that individuals with shorter average TST (vs. longer average TST) had higher pre-sleep cortisol levels (p=.01).
CONCLUSION: Our findings provide evidence that pre-sleep cortisol is associated with sleep duration and quality at the within-individual level. Furthermore, individuals with short or poor sleep had flatter diurnal cortisol slope. Although the effect sizes are small, these findings show the naturalistic associations between sleep and cortisol in a relatively healthy sample. These findings suggest that sleep maintains the regulation of the stress-response system, which is protective against mental and physical disorders.
METHODS: Ninety-five young adults (Mage=20.48±1.59 years) provided saliva samples at awakening and pre-sleep over 14 consecutive days, providing 2,345 samples (85% viable). The Z-Machine Insight+ was used to record over 900 nights of total sleep time (TST) and sleep efficiency (SE). Multilevel models tested these data at the between- and within-person levels.
RESULTS: Higher pre-sleep cortisol predicted shorter TST (p<.001) and lower SE (p<.001) at the within-person level. Individuals with shorter average TST (p =.007) or lower average SE (p<.001) had flatter diurnal cortisol slope, compared to those with longer average TST or higher average SE. Follow up analyses showed that individuals with shorter average TST (vs. longer average TST) had higher pre-sleep cortisol levels (p=.01).
CONCLUSION: Our findings provide evidence that pre-sleep cortisol is associated with sleep duration and quality at the within-individual level. Furthermore, individuals with short or poor sleep had flatter diurnal cortisol slope. Although the effect sizes are small, these findings show the naturalistic associations between sleep and cortisol in a relatively healthy sample. These findings suggest that sleep maintains the regulation of the stress-response system, which is protective against mental and physical disorders.
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