NICU Diet, Physical Growth and Nutrient Accretion, and Preterm Infant Brain Development

Mandy Brown Belfort1, Sara E Ramel2

  • 1Department of Pediatric Newborn Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA.

Neoreviews
|July 2, 2019
PubMed

Insights

Nutritional intake and inflammation impact brain development in very preterm infants. Advanced methods can track growth and guide interventions for better neurodevelopmental outcomes after neonatal intensive care.

Area of Science:

  • Neonatalogy
  • Neuroscience
  • Developmental Biology

Background:

  • Very preterm infants often have neurodevelopmental impairments post-NICU discharge, linked to abnormal brain development and injury during hospitalization.
  • Nutritional factors are key modifiable determinants of infant brain development, yet preterm infants show reduced nutrient accretion compared to the reference fetus.

Purpose of the Study:

  • To explore the relationship between NICU diet, inflammation, physical growth, and brain development in very preterm infants.
  • To evaluate the utility of advanced technologies for assessing nutrient accretion and brain growth.

Main Methods:

  • Utilizing anthropometric indicators (weight, length, head circumference) as traditional proxies for nutrient accretion.
  • Applying novel technologies like air displacement plethysmography and magnetic resonance imaging for direct estimation of lean tissue and brain growth.

Main Results:

  • Standard anthropometrics like weight and head circumference are limited in differentiating healthy tissue growth from fat accumulation or accurately reflecting brain size.
  • Newer technologies enable direct measurement of lean tissue accretion and brain growth, offering a more precise assessment.

Conclusions:

  • Advanced imaging and body composition techniques can improve understanding of how NICU diet and inflammation affect brain development.
  • These methods may help identify infants needing targeted interventions to enhance nutrient accretion and optimize brain development for improved neurodevelopmental outcomes.

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