Related Experiment Video
Updated: Nov 11, 2025

Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
The interaction between diet and neurobehavior in very low birth weight infants
Jennifer Hammond1, Rajit Kamboj1, Sudha Kashyap1
1Division of Neonatology, Department of Pediatrics, Columbia University Irving Medical Center, New York, NY, USA.
Insights
Early high protein nutrition in very low birth weight infants increased active sleep duration, suggesting a link between infant nutrition and nervous system activity. This highlights nutrition's role in development.
Area of Science:
- Neonatal nutrition
- Developmental pediatrics
- Physiological regulation
Background:
- Early life nutrition impacts adult disease pathogenesis.
- Dietary interventions in infancy can modulate physiology and behavior.
- Sympathetic nervous system activity is crucial for infant development.
Purpose of the Study:
- To test if early protein supplementation influences sympathetic nervous system activity in very low birth weight infants.
- To examine the effect of high protein intake on active sleep distribution.
- To investigate the indirect relationship between nutrition and behavior.
Main Methods:
- Randomized controlled trial with 71 very low birth weight infants.
- Two groups: high protein (18% amino acids) vs. conventional (12.5%) parenteral nutrition.
- Sleep studies assessed active and quiet sleep states at full enteral feeding.
Main Results:
- High protein group showed significantly more active sleep (77.2% vs. 70.7%).
- High protein group exhibited significantly less quiet sleep (12.9% vs. 17.7%).
- No differences observed in indeterminate sleep, awake, or crying states.
Conclusions:
- Early high protein nutrition increases active sleep in VLBW infants.
- Sleep state distribution serves as an indirect marker of sympathetic nervous system activity.
- Dietary intake during early development may influence sympathetic nervous system activity.
Background:
Modulation of behavior and physiology by dietary perturbations early in life can provide clues to the pathogenesis of adult diseases. We tested the hypothesis that a period of early protein supplementation modulates sympathetic nervous system activity demonstrated indirectly by an increase in active sleep state distribution in very low birth weight (VLBW) infants.
Methods:
VLBW infants (n = 71) were randomized to a total parenteral nutritional regimen providing 18% of the energy intake as amino acids (AA) or a conventional regimen providing 12.5% to achieve targeted AA intakes of 4 g/kg/day (0.004 kcal/kg/day) and 3 g/kg/day (0.003 kcal/kg/day), respectively. Both groups were weaned to enteral feeding and advanced to provide similar AA intake of 4 g/kg/day (0.004 kcal/kg/day). Six-hour daytime, behavioral sleep studies were performed when the infants reached full enteral intake (165 ml/kg/day).
Results:
Infants in the high protein group spent more time in active sleep (77.2 ± 10.5% vs. 70.7 ± 11.8%), p < 0.01 and less time in quiet sleep (12.9 ± 3.4% vs. 17.7 ± 7.0%, p < 0.01) as compared to the conventional group. No group differences were observed for indeterminate sleep, awake, or crying states.
Conclusions:
These results suggest that dietary intake may indirectly influence sympathetic nervous system activity.
Impact:
Infants randomized to an early, high protein nutritional regimen spent an increased percentage of time in active sleep, supporting the hypothesis that nutrition and behavior are interactive. Furthermore, sleep states are an indirect measure of sympathetic nervous system activity, suggesting that dietary intake may influence sympathetic nervous system activity. This study highlights the importance of considering the impact of nutrition during critical periods of development in order to further understand and improve the long-term outcomes of very low birth weight infants.
Related Concept Videos
Parentral Nutrition: Centeral and Peripheral Parental Nutrition
PN can be administered through two primary routes:
1. Central Parenteral Nutrition (CPN):
CPN involves delivering a high concentration of nutrients through a large vein. This is typically achieved using a Peripherally Inserted Central Catheter (PICC) or,...
Environmental Influences on Intelligence

