Sleep deprivation is suggested to impact emotion regulation, but few studies have directly examined it. This study investigated the influence of sleep deprivation on three commonly used emotion regulation strategies (distraction, reappraisal, suppression) in Gross's (1998) process model of emotion regulation. Young healthy adults were randomly assigned to a sleep deprivation group (SD; n = 26, 13 males, age = 20.0 ± 1.7) or a sleep control group (SC; n = 25, 13 males, age = 20.2 ± 1.7). Following 24-h sleep deprivation or normal nighttime sleep, participants completed an emotion regulation task, in which they naturally viewed or applied a given emotion regulation strategy towards negative pictures, with electroencephalographic (EEG) recordings. A reduction in the centroparietal late positive potential (LPP) amplitudes towards negative pictures from the naturally viewing condition to a regulated condition was calculated as an index of regulatory effects. Comparisons between the two groups indicated that sleep deprivation significantly impaired the regulatory effects of distraction and reappraisal on LPP amplitudes. Suppression did not reduce LPP amplitudes in either group. In addition, habitual sleep quality moderated the effect of sleep deprivation on subjective perception of emotional stimuli, such that sleep deprivation only made good sleepers perceive negative pictures as more unpleasant and more arousing, but it had no significant effect on poor sleepers' perception of negative pictures. Altogether, this study provides the first evidence that sleep deprivation may impair the effectiveness of applying adaptive emotion regulation strategies (distraction and reappraisal), creating potentially undesirable consequences to emotional well-being.
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http://dx.doi.org/10.3758/s13415-018-00667-y | DOI Listing |
Sleep Med
January 2025
Université de Paris, NeuroDiderot, INSERM, Paris, France.
This study aimed to investigate child and maternal-related predictors of Early Childhood Insomnia (ECI) based on a parent-rated severity in a convenience sample of mother-infant dyads with ECI. We conducted a single-center, cross-sectional prospective study involving infants aged 6-36 months who attended the Pediatric Behavioral Sleep Outpatient Clinic at Marmara University Hospital, Istanbul, over 5 years for ECI. Infant sleep was evaluated by Brief Infant Sleep Questionnaire.
View Article and Find Full Text PDFBrain Sci
December 2024
Faculty of Pharmacy, Ton Duc Thang University, Ho Chi Minh City 700000, Vietnam.
The interaction between Alzheimer's disease (AD) and sleep deprivation has recently gained attention in the scientific literature, and recent advances suggest that AD epidemiology management should coincide with the management of sleeping disorders. This review focuses on the aspects of the mechanisms underlying the link between AD and insufficient sleep with progressing age. We also provide information which could serve as evidence for future treatments of AD from the early stages in connection with sleep disorder medication.
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December 2024
Aviation Psychology Research Office, Air Force Medical Center, Fourth Military Medical University, Beijing 100142, China.
Background: Spatial working memory is crucial for processing visual and spatial information, serving as a foundation for complex cognitive tasks. However, the effects of prolonged sleep deprivation on its dynamics and underlying neural mechanisms remain unclear. This study aims to investigate the specific trends and neural mechanisms underlying spatial working memory alterations during 36 h of acute sleep deprivation.
View Article and Find Full Text PDFIran J Basic Med Sci
January 2025
Department of Physiology, Faculty of Medicine, Suleyman Demirel University, Isparta, Turkey.
Objectives: This study aimed to investigate the potential effects of different doses of essential oil (Lavender EO) administered by inhalation on sleep latency and neuromodulators regulating the sleep/wake cycle in rats with total sleep deprivation (TSD).
Materials And Methods: Forty-eight male Sprague-Dawley rats were divided into five groups: Control, Alprazolam (ALP, 0.25 mg/kg given intraperitoneally), L1 (Lavender EO, 0.
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