Related Experiment Video
Updated: Feb 14, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Nutrient Intake in the First Two Weeks of Life and Brain Growth in Preterm Neonates
Juliane Schneider1,2, Céline J Fischer Fumeaux2, Emma G Duerden1
1Department of Paediatrics, University of Toronto and The Hospital for Sick Children, Toronto, Canada.
Insights
Early nutrition in preterm infants boosts brain growth and white matter maturation. Greater energy and enteral feeding in the first two weeks positively impact brain development and neurodevelopmental outcomes.
Area of Science:
- Neonatal Medicine
- Neuroscience
- Developmental Biology
Background:
- Optimizing early nutrition in preterm neonates is crucial for brain health and neurodevelopment.
- Early nutritional intake may enhance brain maturation and influence long-term outcomes.
- Understanding the impact of nutrition on brain development in vulnerable preterm infants is essential.
Purpose of the Study:
- To associate early energy and macronutrient intake with brain growth and white matter (WM) maturation in preterm neonates.
- To investigate how critical illness affects the relationship between nutrition and brain development.
- To explore the link between early nutrition, brain development, and neurodevelopmental outcomes.
Main Methods:
- Serial MRI scans (3) were used to assess brain growth and WM maturation in 49 preterm neonates.
- Nutritional intake (energy, macronutrients) was monitored during the first 14 days of life.
- Clinical factors and neurodevelopmental outcomes at 18 months corrected age were collected.
Main Results:
- Higher energy and lipid intake correlated with increased total brain and basal nuclei volumes.
- Energy and lipid intake were associated with improved fractional anisotropy in white matter tracts.
- Adequate energy intake mitigated the negative association between ventilation duration and brain volume.
Conclusions:
- Greater energy and enteral feeding in early life promote robust brain growth and accelerated WM maturation in preterm infants.
- Enhanced brain growth mediated by early nutrition may explain long-term neurodevelopmental benefits.
- Optimizing early nutrition is a potential strategy to reduce adverse brain health effects of critical illness in preterm neonates.
Background:
Optimizing early nutritional intake in preterm neonates may promote brain health and neurodevelopment through enhanced brain maturation. Our objectives were (1) to determine the association of energy and macronutrient intake in the first 2 weeks of life with regional and total brain growth and white matter (WM) maturation, assessed by 3 serial MRI scans in preterm neonates; (2) to examine how critical illness modifies this association; and (3) to investigate the relationship with neurodevelopmental outcomes.
Methods:
Forty-nine preterm neonates (21 boys, median [interquartile range] gestational age: 27.6 [2.3] weeks) were scanned serially at the following median postmenstrual weeks: 29.4, 31.7, and 41. The total brain, basal nuclei, and cerebellum were semiautomatically segmented. Fractional anisotropy was extracted from diffusion tensor imaging data. Nutritional intake from day of life 1 to 14 was monitored and clinical factors were collected.
Results:
Greater energy and lipid intake predicted increased total brain and basal nuclei volumes over the course of neonatal care to term-equivalent age. Similarly, energy and lipid intake were significantly associated with fractional anisotropy values in selected WM tracts. The association of ventilation duration with smaller brain volumes was attenuated by higher energy intake. Brain growth predicted psychomotor outcome at 18 months' corrected age.
Conclusions:
In preterm neonates, greater energy and enteral feeding during the first 2 weeks of life predicted more robust brain growth and accelerated WM maturation. The long-lasting effect of early nutrition on neurodevelopment may be mediated by enhanced brain growth. Optimizing nutrition in preterm neonates may represent a potential avenue to mitigate the adverse brain health consequences of critical illness.
Related Concept Videos
The Angiosperm Life Cycle
Characteristics of Life
Half-life of a Reaction
Absorption of Nutrients
Enterocytes, which are specialized polar epithelial cells, line the mucosa of the small intestinal walls. These cells...
Regulation of Water Intake
Regulation of Food Intake

