Fetal and infant growth patterns, sleep, and 24-h activity rhythms: a population-based prospective cohort study in

Victoria A A Beunders1,2, M Elisabeth Koopman-Verhoeff2,3,4, Marijn J Vermeulen1

  • 1Department of Pediatrics, Division of Neonatology, Erasmus MC Sophia Children's Hospital, University Medical Center Rotterdam, Rotterdam, The Netherlands.

Journal of Sleep Research
|January 28, 2023
PubMed

Insights

Children with fetal and infant growth restriction experienced longer, more efficient sleep at school-age. This suggests an increased sleep need for development following early-life challenges. Preterm birth did not impact sleep patterns.

Area of Science:

  • Pediatrics
  • Developmental Biology
  • Sleep Medicine

Background:

  • Fetal and infant growth patterns are crucial developmental indicators.
  • Sleep and circadian rhythms are vital for child development and school-age functioning.
  • Understanding the long-term impact of early growth on sleep is essential.

Purpose of the Study:

  • To investigate the associations between fetal/infant weight patterns and preterm birth with school-age sleep and 24-hour activity rhythms.
  • To determine if early growth trajectories influence sleep duration, efficiency, and stability later in childhood.

Main Methods:

  • Prospective population-based study of 1327 children from birth to 10-15 years.
  • Fetal weight estimated via ultrasound; birth weight and gestational age from registries; infant weight measured at 6, 12, 24 months.
  • School-age sleep and activity rhythms assessed using wrist actigraphy over 9 nights.

Main Results:

  • Low birth weight (<2500g) associated with longer sleep duration.
  • Fetal/infant growth deceleration linked to longer sleep duration, higher sleep efficiency, and shorter wake after sleep onset.
  • Normal fetal growth with infant acceleration associated with lower inter-daily sleep stability.
  • Preterm birth showed no association with sleep or 24-h rhythm parameters.

Conclusions:

  • Fetal and infant growth restriction are associated with altered sleep patterns in school-aged children.
  • Findings suggest enhanced sleep in children with growth restriction may support developmental catch-up.
  • Early life growth trajectories are important predictors of later sleep architecture and rhythmicity.

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