Characterizing the temporal dynamics and maturation of brain activity during sleep: An EEG microstate study in

Parvaneh Adibpour1,2, Hala Nasser1,3, Amandine Pedoux4

  • 1Université Paris Cité, INSERM, NeuroDiderot, Paris, France.

Insights

Premature birth alters infant brain development, showing slower activity patterns. Microstate analysis revealed that preterm infants

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pediatrics

Background:

  • Premature birth and associated stress can disrupt brain maturation, leading to potential long-term neurodevelopmental issues in children.
  • Early assessment of brain function is crucial for identifying atypical outcomes in preterm infants, enabling timely interventions.

Purpose of the Study:

  • To characterize the maturation of brain activity in preterm infants using high-density electroencephalography (HD-EEG).
  • To compare brain activity dynamics between preterm and full-term infants and track changes over time.

Main Methods:

  • Recorded HD-EEG in extreme and very preterm infants at term-equivalent age and 2 months later, compared to full-term infants.
  • Employed microstate analysis to quantify spatio-temporal dynamics of spontaneous brain network activity, controlling for vigilance.

Main Results:

  • Preterm infants exhibited slower brain activity dynamics and altered spatio-temporal properties compared to full-term infants.
  • Maturation in preterm infants involved faster dynamics, shorter microstate durations, and evolving spatial organization of brain networks.
  • Sex and gestational age influenced microstate dynamics, with boys showing slower dynamics.

Conclusions:

  • The microstate approach effectively reveals maturational properties of emergent brain network activity in preterm infants.
  • Findings underscore the potential for early detection and intervention in high-risk preterm populations.