Related Experiment Video
Updated: Jan 11, 2026

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Preterm Birth, Fetal Growth Restriction and Early Postnatal Body Mass Index Normalisation Predict Adult Anthropometry
Achim Fieß1, Alica Hartmann1, Eva Mildenberger2
1Department of Ophthalmology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.
Aim:
This study assessed the long-term impact of prematurity and fetal growth restriction on adult anthropometric and metabolic outcomes.
Methods:
In this retrospective cohort study at the University Medical Center Mainz, Germany, adults aged 18-52 years born between 1969 and 2002 were examined between 2019 and 2021. Participants were classified by gestational age and birth weight percentiles as small (SGA), appropriate (AGA), or large for gestational age (LGA). Adult anthropometric and metabolic parameters were analysed using multivariable regression models in relation to gestational age, fetal growth, and early postnatal BMI normalisation.
Results:
Adults born preterm were shorter, lighter and had smaller head circumferences in adulthood than those born at term. Moderately to severely SGA individuals were shorter and lighter and had smaller head circumferences and lower BMI. Participants born LGA were taller and heavier than individuals born AGA. Early postnatal BMI normalisation was associated with improved adult anthropometry in preterm SGA participants only. No significant associations were observed between gestational age or birth weight groups and metabolic outcomes, including metabolic syndrome, hypertension, cholesterol, glucose and triglycerides.
Conclusion:
Prematurity and fetal growth restriction were linked to differences in adult anthropometry, whereas early postnatal BMI normalisation appeared beneficial in preterm SGA individuals.
More Related Videos
Related Concept Videos
Nature and Nurture
Signs of Puberty
Regression Toward the Mean
Obesity
Teratogenicity
Pathophysiology of Diabetes
Type 1 diabetes is characterized by autoimmune-mediated destruction of pancreatic β cells, with environmental factors potentially triggering this process in genetically susceptible individuals. Despite many not having a family history, certain genes increase susceptibility,...

