Early physical growth and neurodevelopment in full-term small for gestational age infants: reference points from

Chengju Wang1, Yiguo Zhou2, Ting Yu3

  • 1Department of Pediatrics, The Second Affiliated Hospital of Army Medical University, Chongqing, China.

Insights

Full-term small for gestational age (SGA) infants’ neurodevelopment at 1 year is linked to postnatal growth, not just SGA status. Relative length reveals heterogeneity within the SGA group, with specific weight ratios correlating with developmental quotient (DQ) levels.

Area of Science:

  • Pediatric Neurodevelopment
  • Growth and Development
  • Small for Gestational Age (SGA) Infants

Background:

  • Full-term small for gestational age (SGA) infants face risks for impaired neurodevelopment.
  • Limited quantitative data exists on growth-related developmental patterns in SGA infants.
  • Understanding heterogeneity within the SGA population is crucial for targeted interventions.

Purpose of the Study:

  • To investigate the association between 1-year neurodevelopment and physical growth in full-term SGA and appropriate for gestational age (AGA) infants.
  • To explore heterogeneity within the SGA group based on relative length at 1 year.
  • To identify weight-ratio reference points for developmental quotient (DQ) levels in SGA infants compared to AGA infants.

Main Methods:

  • Retrospective cross-sectional study including 448 SGA and 2,376 AGA children.
  • Collection of birth data, 1-year anthropometric measurements, and Gesell Developmental Scale (GDS) scores.
  • Use of generalized linear models (GLMs), propensity score matching (PSM), and restricted cubic spline (RCS) models for analysis.

Main Results:

  • In SGA infants, 1-year weight positively correlated with DQ across multiple domains (fine motor, adaptive behavior, language, personal-social).
  • Lower relative length in SGA infants was associated with reduced weight, length, head circumference, and DQ scores.
  • After covariate matching, no significant DQ differences were found between SGA and AGA groups; weight ratio showed nonlinear associations with DQ.

Conclusions:

  • Postnatal growth status, rather than SGA status alone, is more closely associated with 1-year neurodevelopment in SGA infants.
  • Relative length at 1 year highlights significant heterogeneity within the SGA cohort.
  • Model-derived weight-ratio reference points offer statistical benchmarks for developmental comparison in SGA infants.
Abstract