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Updated: Oct 25, 2025

Preterm EEG: A Multimodal Neurophysiological Protocol
Published on: February 18, 2012
Multi-Omics Analysis on Neurodevelopment in Preterm Neonates: A Protocol Paper
Insights
The gut microbiome influences preterm infant health. This study protocol aims to link infant gut bacteria, pain, genetics, and neurodevelopmental outcomes in neonatal intensive care units.
Area of Science:
- Neonatal research
- Microbiome studies
- Developmental pediatrics
Background:
- The gut microbiome plays a critical role in the health and disease of preterm infants.
- Understanding these microbial communities is essential for improving infant outcomes.
Purpose of the Study:
- To present a protocol for characterizing the relationship between the intestinal microbiome and health outcomes in preterm infants.
- To enable other neonatal intensive care units to expand their existing protocols.
Main Methods:
- Prospective, longitudinal study of preterm infants (<32 weeks gestational age or <1,500 g).
- Data collection includes early life pain/stress, gut microbiome, host genetics, and neurobehavioral assessments during the neonatal intensive care unit stay.
- Follow-up assessments of gut microbiome, pain sensitivity, medical, growth, and developmental outcomes at corrected ages of 4, 8-12, and 18-24 months.
Main Results:
- As of February 14, 2020, 214 preterm infants have been recruited.
- Hypothesis: Increased pain/stress in infants correlates with altered gut microbiome and adverse outcomes (necrotizing enterocolitis, feeding intolerance, neurodevelopmental impairments).
- Investigating the impact of microbiome alterations on the risk of these adverse outcomes and the interaction with host genetics.
Conclusions:
- The study protocol aims to elucidate the complex interplay between the gut microbiome, pain, genetics, and health outcomes in preterm infants.
- Findings will inform clinical practices in neonatal intensive care units to potentially improve long-term health and development.
Background:
The gut microbiome is an important determinant of health and disease in preterm infants.
Objectives:
The objective of this article was to share our current protocol for other neonatal intensive care units to potentially expand their existing protocols, aiming to characterize the relationship between the intestinal microbiome and health outcomes in preterm infants.
Methods:
This prospective, longitudinal study planned to recruit 160 preterm infants born <32 weeks gestational age or weighing <1,500 g and admitted to one of two Level III/IV neonatal intensive care units. During the neonatal intensive care unit period, the primary measures included events of early life pain/stress, gut microbiome, host genetic variations, and neurobehavioral assessment. During follow-up visits, gut microbiome; pain sensitivity; and medical, growth, and developmental outcomes at 4, 8-12, and 18-24 months corrected age were measured.
Discussion:
As of February 14, 2020, 214 preterm infants have been recruited. We hypothesize that infants who experience greater levels of pain/stress will have altered gut microbiome, including potential adverse outcomes such as necrotizing enterocolitis and host genetic variations, feeding intolerance, and/or neurodevelopmental impairments. These will differ from the intestinal microbiome of preterm infants who do not develop these adverse outcomes. To test this hypothesis, we will determine how alterations in the intestinal microbiome affect the risk of developing necrotizing enterocolitis, feeding intolerance, and neurodevelopmental impairments in preterm infants. In addition, we will examine the interaction between the intestinal microbiome and host genetics in the regulation of intestinal health and neurodevelopmental outcomes.
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