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Updated: Nov 25, 2025

Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
Neonatal brain metabolite concentrations: Associations with age, sex, and developmental outcomes
Emily C Merz1, Catherine Monk2,3,4, Ravi Bansal5,6
1Department of Psychology, Colorado State University, Fort Collins, CO, United States of America.
Insights
Brain metabolite levels like N-acetylaspartate (NAA) increase with age in neonates. Females exhibit higher white matter metabolite concentrations than males, and neonatal NAA is linked to later cognitive development.
Area of Science:
- Neuroscience
- Developmental Biology
- Biochemistry
Background:
- Understanding early brain development is crucial for identifying developmental trajectories.
- Age and sex are known factors influencing neurodevelopment, but their impact on neonatal brain metabolites is not fully understood.
Purpose of the Study:
- To examine age and sex differences in neonatal brain metabolite concentrations.
- To investigate the relationship between neonatal brain metabolites and subsequent infant development.
Main Methods:
- Magnetic Resonance Imaging (MRI) with chemical shift imaging was used to map N-acetylaspartate (NAA), creatine, and choline in 41 healthy neonates.
- Infants were assessed at 4 months using the Bayley Scales of Infant and Toddler Development and a learning/memory paradigm.
Main Results:
- Postmenstrual age positively correlated with NAA concentrations in various brain regions, with similar trends for creatine and choline.
- Females showed higher white matter and subcortical gray matter metabolite levels compared to males.
- Neonatal NAA concentrations were associated with better learning but poorer memory at 4 months.
Conclusions:
- Age-related increases in NAA, creatine, and choline indicate rapid development of neuronal viability, energy metabolism, and cell membrane turnover in early life.
- Females may experience accelerated regional neuronal development compared to males.
- Neonatal brain metabolite profiles offer insights into early neurodevelopmental trajectories and potential sex-based differences.
Abstract:
Age and sex differences in brain metabolite concentrations in early life are not well understood. We examined the associations of age and sex with brain metabolite levels in healthy neonates, and investigated the associations between neonatal brain metabolite concentrations and developmental outcomes. Forty-one infants (36-42 gestational weeks at birth; 39% female) of predominantly Hispanic/Latina mothers (mean 18 years of age) underwent MRI scanning approximately two weeks after birth. Multiplanar chemical shift imaging was used to obtain voxel-wise maps of N-acetylaspartate (NAA), creatine, and choline concentrations across the brain. The Bayley Scales of Infant and Toddler Development, a measure of cognitive, language, and motor skills, and mobile conjugate reinforcement paradigm, a measure of learning and memory, were administered at 4 months of age. Findings indicated that postmenstrual age correlated positively with NAA concentrations in multiple subcortical and white matter regions. Creatine and choline concentrations showed similar but less pronounced age related increases. Females compared with males had higher metabolite levels in white matter and subcortical gray matter. Neonatal NAA concentrations were positively associated with learning and negatively associated with memory at 4 months. Age-related increases in NAA, creatine, and choline suggest rapid development of neuronal viability, cellular energy metabolism, and cell membrane turnover, respectively, during early life. Females may undergo earlier and more rapid regional developmental increases in the density of viable neurons compared to males.
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