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May 7, 20260 citationsOpen Access

The Interaction between Sleep and Development on Wake EEG Oscillations

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SSSophia SnipesVJValeria JaramilloEKElena Krugliakova

Key Points

  • The study investigates how sleep and developmental factors affect wake EEG oscillations in children and adolescents.
  • Analyzed EEG data from 163 participants aged 3–25 years (62 female) to assess age- and sleep-dependent changes in EEG oscillations.
  • Compared wake EEG measures in 58 children with ADHD and neurotypical controls, ensuring inclusion criteria of good sleep quality.
  • Measured oscillation amplitudes, densities, and aperiodic activity to assess the impact of sleep and age.
  • Oscillation amplitudes decreased with age and sleep, while wake oscillation densities showed distinct patterns across age groups: decreasing in children and increasing in adolescents and adults.
  • Aperiodic activity was influenced by sleep and age with minimal interaction effects noted.
  • No significant differences in wake measures related to ADHD were found, suggesting variability in sleep quality may influence previous findings.

Abstract

The amount of time previously spent awake or asleep strongly impacts the sleep electroencephalogram (EEG), especially slow waves during nonrapid-eye-movement (NREM) sleep. These effects on the sleep EEG meaningfully interact with age and to a lesser extent developmental disorders such as attention-deficit hyperactivity disorder (ADHD). We aimed to determine whether EEG oscillations during wakefulness were likewise affected by the interaction of sleep and development, using data collected from 163 participants aged 3–25 years old (62 female). We analyzed age- and sleep-dependent changes in two measures of oscillatory activity (amplitudes and density) and aperiodic activity (offsets and exponents). Finally, we compared wake EEG in children with ADHD ( N = 58) to neurotypical controls, with habitual good sleep quality required for inclusion. We found that oscillation amplitudes exhibited the same dynamics as sleep slow waves: decreasing with age, decreasing after sleep, and the overnight decrease decreasing with age. Strikingly, wake oscillation densities in the alpha band decreased overnight in children but increased overnight in adolescents and adults. Aperiodic measures were affected by both sleep and age albeit with minimal interaction. No wake measure showed significant effects of ADHD, suggesting that previously reported differences in patients may reflect uncontrolled variability in sleep quality rather than disorder-specific effects. While these results do not disentangle homeostatic from circadian effects, they underscore the need to control for sleep/wake history and measurement scheduling in all EEG experiments, especially when focusing on children and adolescents.

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Cite This Study

Snipes et al. (2026) studied this question.

synapsesocial.com/papers/69fc2c4b8b49bacb8b347e23https://doi.org/10.5167/uzh-433937
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