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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.
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.
Abstract:
The study objective was to explore associations of fetal and infant weight patterns and preterm birth with sleep and 24-h activity rhythm parameters at school-age. In our prospective population-based study, 1327 children were followed from birth to age 10-15 years. Fetal weight was estimated using ultrasound in the second and third trimester of pregnancy. Birth weight and gestational age were available from midwife registries. Infant weight was measured at 6, 12 and 24 months. Fetal and infant weight acceleration or deceleration were defined as a change of >0.67 standard deviation between the corresponding age intervals. At school-age, sleep duration, sleep efficiency, wake after sleep onset, social jetlag, inter-daily stability, and intra-daily variability were assessed using tri-axial wrist actigraphy for 9 consecutive nights. We observed that low birth weight (<2500 g) was associated with 0.24 standard deviation (95% confidence interval [CI] 0.04; 0.43) longer sleep duration compared to normal weight. Compared to normal growth, growth deceleration in fetal life and infancy was associated with 0.40 standard deviation (95% CI 0.07; 0.73) longer sleep duration, 0.44 standard deviation (95% CI 0.14; 0.73) higher sleep efficiency, and -0.41 standard deviation (95% CI -0.76; -0.07) shorter wake after sleep onset. A pattern of normal fetal growth followed by infant growth acceleration was associated with -0.40 standard deviation (95% CI -0.61; -0.19) lower inter-daily stability. Preterm birth was not associated with any sleep or 24-h rhythm parameters. Our findings showed that children with fetal and infant growth restriction had longer and more efficient sleep at school-age, which may be indicative of an increased need for sleep for maturational processes and development after a difficult start in life.
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