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Updated: Nov 9, 2025

Preterm EEG: A Multimodal Neurophysiological Protocol
Published on: February 18, 2012
Early development of sleep and brain functional connectivity in term-born and preterm infants
Julie Uchitel1, Sampsa Vanhatalo2,3, Topun Austin4,5
1Department of Paediatrics, University of Cambridge, Cambridge Biomedical Campus, Cambridge, UK.
Insights
Proper sleep development in newborns is vital for lifelong brain health. Poor sleep, especially in preterm infants, may negatively impact neurodevelopment and functional brain connectivity.
Area of Science:
- Neonatal neuroscience
- Developmental biology
- Neuroimaging
Background:
- Early sleep development is critical for long-term neurological well-being.
- Preterm infants experience sleep maturation in NICU environments, potentially disrupting development.
- Impaired functional brain connectivity (FC) is linked to poor neurocognitive outcomes.
Purpose of the Study:
- To review the development of sleep and functional brain connectivity (FC) in early life.
- To explore the relationship between sleep, preterm birth, and FC.
- To identify challenges and potential solutions for studying these processes.
Main Methods:
- Review of current literature on infant sleep ontogenesis and FC development.
- Discussion of neuroimaging and neuromonitoring advancements.
- Analysis of the impact of preterm birth on sleep and brain development.
Main Results:
- Sleep ontogenesis involves maturing brain states, crucial for neurodevelopment.
- NICU environments may negatively affect sleep patterns in preterm infants.
- The mechanisms linking sleep, preterm birth, and FC are not well understood.
Conclusions:
- Early sleep is essential for developing functional brain connectivity.
- Preterm birth poses risks to sleep and subsequent brain development.
- Further research using advanced neuromonitoring is needed to understand and improve infant sleep and FC.
Abstract:
The proper development of sleep and sleep-wake rhythms during early neonatal life is crucial to lifelong neurological well-being. Recent data suggests that infants who have poor quality sleep demonstrate a risk for impaired neurocognitive outcomes. Sleep ontogenesis is a complex process, whereby alternations between rudimentary brain states-active vs. wake and active sleep vs. quiet sleep-mature during the last trimester of pregnancy. If the infant is born preterm, much of this process occurs in the neonatal intensive care unit, where environmental conditions might interfere with sleep. Functional brain connectivity (FC), which reflects the brain's ability to process and integrate information, may become impaired, with ensuing risks of compromised neurodevelopment. However, the specific mechanisms linking sleep ontogenesis to the emergence of FC are poorly understood and have received little investigation, mainly due to the challenges of studying causal links between developmental phenomena and assessing FC in newborn infants. Recent advancements in infant neuromonitoring and neuroimaging strategies will allow for the design of interventions to improve infant sleep quality and quantity. This review discusses how sleep and FC develop in early life, the dynamic relationship between sleep, preterm birth, and FC, and the challenges associated with understanding these processes. IMPACT: Sleep in early life is essential for proper functional brain development, which is essential for the brain to integrate and process information. This process may be impaired in infants born preterm. The connection between preterm birth, early development of brain functional connectivity, and sleep is poorly understood. This review discusses how sleep and brain functional connectivity develop in early life, how these processes might become impaired, and the challenges associated with understanding these processes. Potential solutions to these challenges are presented to provide direction for future research.
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