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Measuring Neural Mechanisms Underlying Sleep-Dependent Memory Consolidation During Naps in Early Childhood
Published on: October 2, 2019
Presleep activities and time of sleep onset in children
Louise S Foley1, Ralph Maddison, Yannan Jiang
1National Institute for Health Innovation, University of Auckland, Private Bag 92019, Auckland Mail Centre, Auckland 1142, New Zealand. L.foley@hotmail.com
Insights
Screen time before bed is linked to later sleep onset in young people. Reducing screen use may help improve sleep duration and timing in adolescents.
Area of Science:
- Sleep science
- Adolescent health
- Behavioral science
Background:
- Declining sleep duration is a concern in young people.
- Presleep activities significantly influence sleep onset and duration.
- A use-of-time approach can detail presleep behaviors.
Purpose of the Study:
- To describe activities in the 90 minutes before sleep onset in New Zealand youth.
- To examine the association between presleep activities and sleep onset time.
- To identify behavioral patterns linked to early vs. late sleep onset.
Main Methods:
- A national survey collected self-reported time use data from 2017 participants (ages 5-18).
- Activities were categorized into screen sedentary time, nonscreen sedentary time, and self-care.
- Regression models analyzed the relationship between presleep behaviors and sleep onset categories.
Main Results:
- Screen sedentary time, primarily television watching, comprised approximately 30 minutes of the presleep period.
- Later sleep onset was significantly associated with increased screen time.
- Earlier sleep onset correlated with greater engagement in nonscreen sedentary activities and self-care.
Conclusions:
- Screen sedentary activities dominate the presleep period for young people and are linked to delayed sleep onset.
- Interventions targeting a reduction in presleep screen time may promote earlier sleep onset.
- Improving presleep habits could lead to better overall sleep duration in youth.
Objective:
Presleep activities have been implicated in the declining sleep duration of young people. A use-of-time approach may be used to describe the presleep period. The study aims were to describe the activities undertaken 90 minutes before sleep onset and to examine the association between activities and time of sleep onset in New Zealand young people.
Methods:
Participants (N = 2017; 5-18 years) self-reported their time use as part of a national survey. All activities reported in the 90 minutes before sleep were extracted. The top 20 activities were grouped into 3 behavioral sets: screen sedentary time, nonscreen sedentary time, and self-care. An adjusted regression model was used to estimate presleep time spent in each behavioral set for 4 distinct categories of sleep onset (very early, early, late, or very late), and the differences between sleep onset categories were tested.
Results:
In the entire sample, television watching was the most commonly reported activity, and screen sedentary time accounted for ∼30 minutes of the 90-minute presleep period. Participants with a later sleep onset had significantly greater engagement in screen time than those with an earlier sleep onset. Conversely, those with an earlier sleep onset spent significantly greater time in nonscreen sedentary activities and self-care.
Conclusions:
Screen sedentary time dominated the presleep period in this sample and was associated with a later sleep onset. The development of interventions to reduce screen-based behaviors in the presleep period may promote earlier sleep onset and ultimately improved sleep duration in young people.
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