Related Experiment Video
Updated: Nov 18, 2025

Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Early diet in preterm infants and later cognition: 10-year follow-up of a randomized controlled trial
Nicholas D Embleton1,2, Claire L Wood3, Mark S Pearce4
1Population Health Sciences Institute, Newcastle University, Newcastle upon Tyne, UK. Nicholas.embleton@ncl.ac.uk.
Insights
Post-discharge nutrition for preterm infants did not impact overall childhood cognition. However, faster infant weight and head growth were linked to better cognitive outcomes, highlighting the importance of early nutrition.
Area of Science:
- Pediatrics
- Neuroscience
- Nutritional Science
Background:
- Adequate nutrition for preterm infants post-discharge is challenging.
- The post-discharge period is critical for growth and cognitive development.
- This study investigated the long-term effects of post-discharge nutrition on childhood cognition.
Purpose of the Study:
- To assess the impact of different post-discharge formulas on childhood cognitive outcomes.
- To explore the relationship between early growth and cognitive development in preterm-born children.
Main Methods:
- Randomized controlled trial comparing preterm formula (PTF) and term formula (TF) post-discharge.
- Cognitive function assessed using Wechsler Intelligence Scale for Children III (WISC-III) at ~10 years.
- Analysis included full-scale intelligence quotient (FSIQ) and four-factor index scores (verbal comprehension, freedom from distractibility, perceptual organization, processing speed).
Main Results:
- No significant difference in FSIQ between PTF and TF groups.
- PTF-fed children showed significantly higher processing speed (PSI).
- Faster weight gain and infant head growth correlated positively with higher FSIQ and specific cognitive factors.
Conclusions:
- Post-discharge macronutrient enrichment alone does not confer long-term cognitive benefits.
- Early infant growth, particularly weight and head circumference, is strongly associated with better childhood cognition.
- Further research is needed to optimize early nutrition strategies for preterm infants.
Background:
Achieving adequate nutrition in preterm infants is challenging. The post-discharge period may be critical for influencing growth and cognitive outcomes. We studied the effects of post-discharge nutrition on childhood cognition.
Methods:
Preterm-born children were randomized at ~36 weeks corrected age (CGA) to either preterm formula (PTF) or term formula (TF) until 6 months, or PTF until 40 weeks CGA, then TF until 6 months (crossover group). Childhood cognition was assessed using the short form Wechsler Intelligence Scale for Children III, allowing computation of full-scale intelligence quotient (FSIQ) and four-factor index scores; verbal comprehension, freedom from distractibility (FDI), perceptual organization (POI), and processing speed (PSI).
Results:
Ninety-two children were recruited (mean 10.1 years). FSIQ did not differ by group. PTF-fed children had 10-point higher PSI (p = 0.03) compared to crossover. Faster weight gain from term to 12 weeks CGA was associated with 5-point higher FSIQ (p = 0.02) and four-point higher POI (p = 0.04). Infant head growth was positively associated with FSIQ (+3.8 points, p = 0.04) and FDI (+6 points, p = 0.003).
Conclusions:
While there is no long-term impact of post-discharge macronutrient enrichment on childhood cognition, greater weight and head growth in specific epochs is associated with better outcomes. Further studies are needed to determine optimal early diet in preterm infants.
Impact:
Achieving adequate nutrient intakes in preterm infants before and after hospital discharge is challenging. Nutrient intakes prior to discharge affect later cognitive and metabolic outcomes. Follow-up of a randomized controlled trial shows no cognitive benefit in later childhood from a more nutrient-dense formula compared to standard formula after hospital discharge. Growth in the first year of life is strongly correlated with childhood cognition and emphasizes the importance of nutrition in early life.
Related Concept Videos
Environmental Influences on Intelligence
Biological Influences on Intelligence
The Nativist Approach
Information Processing Approach

