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Updated: Mar 26, 2026

Measuring Neural Mechanisms Underlying Sleep-Dependent Memory Consolidation During Naps in Early Childhood
Published on: October 2, 2019
Mapping changes in cortical activity during sleep in the first 4 years of life
Luana Novelli1, Aurora D'atri1, Cristina Marzano1
1Department of Psychology, University of Rome 'La Sapienza', Rome, Italy.
Insights
Sleep is a local process, with brain activity shifting from back to front during development. This study shows infant sleep EEG patterns mirror this brain maturation, supporting local sleep theories.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Sleep Science
Background:
- Sleep is increasingly understood as a local and use-dependent process.
- Cortical maturation in early life follows a postero-anterior (back-to-front) trajectory.
- Previous research linked regional sleep slow wave activity (SWA) changes to cortical maturation in older individuals.
Purpose of the Study:
- To investigate if electroencephalogram (EEG) rhythms during sleep in infants and children mirror regional cortical maturation.
- To test the hypothesis of a postero-anterior gradient in sleep EEG changes from birth to childhood.
Main Methods:
- Analyzed all-night EEG recordings from 39 healthy infants and children (0-48 months).
- Evaluated regional differences in non-rapid eye movement (NREM) sleep EEG.
- Focused on frequency-specific regional differences and age-related correlations.
Main Results:
- Confirmed the local nature of sleep with frequency-specific regional variations.
- Observed a shift in upper alpha activity (around 11 Hz) from occipital to prefrontal regions.
- Found a positive correlation between frontal theta and alpha EEG activity with age, reflecting a postero-anterior trajectory.
Conclusions:
- NREM sleep shows local differences that parallel cortical maturation in the first four years of life.
- EEG rhythm changes during early sleep support a postero-anterior gradient of brain development.
- Findings reinforce the concept of sleep as a localized, use-dependent developmental process.
Abstract:
A coherent body of evidence supports the notion that sleep is a local and use-dependent process. Significant changes in brain morphology and function occur in the first years of life, revealing a postero-anterior trajectory of cortical maturation. On this basis, a recent study demonstrated that regional cortical maturation between early childhood and late adolescence is reflected in regional changes of sleep slow wave activity (SWA) during non-rapid eye movement (NREM) sleep. Our hypothesis is that changes of electroencephalogram (EEG) rhythms during sleep from birth to childhood are also mirrored by parallel regional changes in the EEG rhythms of sleep according to the assumption of a postero-anterior gradient in cortical maturation. We studied all-night EEG of 39 healthy, full-term, infants and children aged between 0 and 48 months, evaluating regional differences in NREM sleep. We confirmed the strictly local nature of sleep with frequency-specific regional differences. Specifically, we found a general shift of maxima of the upper alpha activity from occipital to prefrontal regions, expressed mainly by the ~11 Hz frequency. This shift corresponds to a postero-anterior trajectory of the so-called 'slow spindles'. The theta and alpha EEG activity of the frontal cortex exhibits a clear, positive, correlation with age. We conclude that specific local differences during NREM sleep, parallel cortical maturation also in the first 4 years of life.
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