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Updated: Jan 26, 2026

Measuring Neural Mechanisms Underlying Sleep-Dependent Memory Consolidation During Naps in Early Childhood
Published on: October 2, 2019
Age and gender-related neurophysiological changes in sleep and wake states during childhood
Kevin Mammeri1, Guillaume Legendre1, Fiona Journal1
1Department of Basic Neurosciences, University of Geneva, Switzerland; Swiss Center for Affective Science, Geneva, Switzerland.
Insights
Childhood brain maturation shows distinct gender trajectories. Girls exhibit earlier maturation with altered sleep patterns and brain activity, impacting cognitive performance differently than boys.
Area of Science:
- Neuroscience
- Developmental Psychology
- Sleep Science
Background:
- Brain maturation and sleep patterns evolve during childhood, affecting cognitive functions.
- The distinct developmental trajectories of sleep and cognition concerning age and gender in children are not fully understood.
Purpose of the Study:
- To investigate age and gender differences in sleep patterns and cognitive development during childhood.
- To explore the relationship between sleep characteristics and cognitive performance in healthy children.
Main Methods:
- 61 healthy children (5-12 years) underwent polysomnography and completed visual memory and sustained attention tasks.
- Sleep data (N3, REM, spindle frequency, delta power) and EEG were analyzed.
- Cognitive performance (SART accuracy) was assessed before and after sleep.
Main Results:
- Girls showed age-related decreases in N3 and REM sleep, and increased N2 sleep spindle frequency, unlike boys.
- A posterior-to-anterior shift in delta power topography was observed in girls compared to boys.
- Girls displayed greater cortical excitability (reduced EEG slope) and a correlation between sleep spindle frequency and SART accuracy.
Conclusions:
- Findings suggest an earlier onset of brain maturation in girls, characterized by altered sleep architecture and increased cortical excitability.
- These sex-specific developmental patterns challenge the view of minimal sleep modifications during childhood.
- Further longitudinal studies are needed to explore the relationship with puberty and precise timing.
Abstract:
Brain maturation and sleep patterns evolve throughout childhood, intricately influencing cognitive functions. However, it remains unclear whether changes in sleep and cognition follow similar or distinct trajectories as a function of age and gender during childhood. We included 61 healthy children (30 boys and 31 girls), aged 5-12 years old, who completed a visual memory task and a sustained attention to response task (SART), before and after undergoing one night of polysomnography at home. Our findings revealed large age-related associations in girls, with N3 and REM durations decreasing and sleep spindle frequency during N2 increasing across development. Conversely, these patterns were not observed in boys. Moreover, a significant interaction showed a shift in delta power topography from posterior to anterior regions in girls compared to boys. Alongside these sleep changes, girls exhibited a predominant excitatory pattern of brain activity during wakefulness as evidenced by a reduction in resting EEG slope. Regarding cognition, we found a large correlation between the increase in sleep spindle frequency in girls and morning accuracy on the SART. Overnight memory consolidation did not vary with age or gender. Taken together, these findings suggest an earlier onset of brain maturation in girls, reflected by less deep sleep, faster sleep spindles, frontal shift in delta power, and greater cortical excitability during wakefulness. This pattern in girls challenges the notion that developmental modifications of sleep are minimal during childhood. How closely may these changes relate to puberty or timing remain to be established in future longitudinal studies.
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