Related Experiment Video
Updated: Nov 8, 2025

Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015
Increased Brain Age Gap Estimate (BrainAGE) in Young Adults After Premature Birth
Dennis M Hedderich1,2, Aurore Menegaux1,2, Benita Schmitz-Koep1,2
1Department of Neuroradiology, School of Medicine, Technical University of Munich, Munich, Germany.
Insights
Adults born prematurely show accelerated brain aging. This study found higher brain age gap estimates in premature-born individuals, linked to factors like lower gestational age and birth weight.
Area of Science:
- Neuroscience
- Developmental Biology
- Gerontology
Background:
- Premature birth is linked to altered physiological aging rates in adulthood.
- While brain development impacts are known, premature birth's effect on brain aging is unclear.
Purpose of the Study:
- To investigate if premature birth influences brain age gap estimates (BrainAGE).
- To explore associations between BrainAGE and perinatal factors or developmental outcomes.
Main Methods:
- Utilized a machine-learning framework on structural MRI data.
- Analyzed a large cohort of young premature-born adults (n=101) and full-term controls (n=111).
- Examined relationships between BrainAGE, gestational age, birth weight, neonatal treatment, TIV, and FS-IQ.
Main Results:
- Premature-born adults exhibited significantly increased BrainAGE compared to full-term controls (p=0.002).
- Elevated BrainAGE correlated with lower gestational age, lower birth weight, and higher neonatal treatment intensity.
- No significant association was found between BrainAGE and total intracranial volume (TIV) or full-scale IQ (FS-IQ).
Conclusions:
- Premature birth is associated with accelerated brain aging in adulthood.
- This suggests an increased risk for premature brain aging in individuals born prematurely.
Abstract:
Recent evidence suggests increased metabolic and physiologic aging rates in premature-born adults. While the lasting consequences of premature birth on human brain development are known, its impact on brain aging remains unclear. We addressed the question of whether premature birth impacts brain age gap estimates (BrainAGE) using an accurate and robust machine-learning framework based on structural MRI in a large cohort of young premature-born adults (n = 101) and full-term (FT) controls (n = 111). Study participants are part of a geographically defined population study of premature-born individuals, which have been followed longitudinally from birth until young adulthood. We investigated the association between BrainAGE scores and perinatal variables as well as with outcomes of physical (total intracranial volume, TIV) and cognitive development (full-scale IQ, FS-IQ). We found increased BrainAGE in premature-born adults [median (interquartile range) = 1.4 (-1.3-4.7 years)] compared to full-term controls (p = 0.002, Cohen's d = 0.443), which was associated with low Gestational age (GA), low birth weight (BW), and increased neonatal treatment intensity but not with TIV or FS-IQ. In conclusion, results demonstrate elevated BrainAGE in premature-born adults, suggesting an increased risk for accelerated brain aging in human prematurity.
Related Concept Videos
Biological Influences on Intelligence
Cognitive Development During Adulthood

