Related Experiment Video
Updated: Sep 25, 2025

Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
Social-Cognitive Network Connectivity in Preterm Children and Relations With Early Nutrition and Developmental
Julie Sato1,2,3, Marlee M Vandewouw1,3,4,5, Kristina Safar1,3
1Diagnostic Imaging, Hospital for Sick Children, Toronto, ON, Canada.
Insights
Very low birth weight (VLBW) infants show altered brain connectivity, impacting social cognition. Early nutrition and brain network function are linked, offering insights for improved neurodevelopmental outcomes in VLBW children.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pediatrics
Background:
- Infants born very low birth weight (VLBW) face risks for brain abnormalities and social-cognitive deficits.
- Resting-state functional magnetic resonance imaging (fMRI) shows altered brain activity in VLBW children.
- Limited understanding exists on how functional brain networks, particularly for social cognition, develop in VLBW individuals using magnetoencephalography (MEG).
Purpose of the Study:
- To investigate resting-state functional connectivity in 5-year-old children born VLBW compared to full-term (FT) controls.
- To examine associations between functional connectivity, early nutrition (macronutrients/energy), and neurodevelopmental outcomes (IQ, behavior).
- To explore the role of MEG in understanding VLBW brain development and social cognition.
Main Methods:
- Collected resting-state MEG recordings from VLBW (n=37) and FT (n=27) children at age 5.
- Assessed IQ and social-cognitive behavior, alongside macronutrient/energy intake during initial hospitalization.
- Analyzed functional connectivity using weighted phase lag index, examining differences across frequency bands and associations with outcomes and nutrition.
Main Results:
- VLBW children exhibited increased resting-state functional connectivity in the gamma band (65-80 Hz), primarily in frontal regions associated with social cognition.
- In VLBW children, heightened gamma-band connectivity correlated with higher IQ, while reduced theta (4-7 Hz) and alpha (8-12 Hz) band connectivity correlated with increased behavioral problems.
- Significant associations were found between early postnatal macronutrient/energy intake and preschool-age functional connectivity.
Conclusions:
- VLBW children display altered resting-state brain connectivity at preschool age, potentially reflecting functional reorganization for social-cognitive and behavioral adaptation.
- Early postnatal nutrition significantly influences the development of resting-state networks in VLBW individuals.
- These findings underscore the importance of early nutrition in improving neurodevelopmental outcomes for this vulnerable population.
Abstract:
Infants born very low birth weight (VLBW, < 1,500 g) are at a heightened risk for structural brain abnormalities and social-cognitive deficits, which can impair behavioural functioning. Resting-state fMRI, reflecting a baseline level of brain activity and underlying social-cognitive processes, has also been reported to be altered in children born VLBW. Yet very little is known about the functional networks underlying social cognition using magnetoencephalography (MEG) and how it relates to neonatal factors and developmental outcomes. Thus, we investigated functional connectivity at rest in VLBW children and the associations with early nutrition and IQ and behavioural problems. We collected resting-state MEG recordings and measures of IQ and social-cognitive behaviour, as well as macronutrient/energy intakes during initial hospitalisation in 5-year-old children born VLBW (n = 37) compared to full-term (FT; n = 27) controls. We examined resting-state network differences controlling for sex and age at scan. Functional connectivity was estimated using the weighted phase lag index. Associations between functional connectivity with outcome measures and postnatal nutrition were also assessed using regression analyses. We found increased resting-state functional connectivity in VLBW compared to FT children in the gamma frequency band (65-80 Hz). This hyper-connected network was primarily anchored in frontal regions known to underlie social-cognitive functions such as emotional processing. In VLBW children, increased functional connectivity was related to higher IQ scores, while reduced connectivity was related to increased behavioural problems at 5 years of age. These within-group associations were found in the slower frequency bands of theta (4-7 Hz) and alpha (8-12 Hz), frequently linked to higher-order cognitive functions. We also found significant associations between macronutrient (protein and lipid) and energy intakes during the first postnatal month with functional connectivity at preschool-age, highlighting the long-term impacts of postnatal nutrition on preterm brain development. Our findings demonstrate that at preschool-age, VLBW children show altered resting-state connectivity despite IQ and behaviour being in the average range, possibly reflecting functional reorganisation of networks to support social-cognitive and behavioural functioning. Further, our results highlight an important role of early postnatal nutrition in the development of resting-state networks, which in turn may improve neurodevelopmental outcomes in this vulnerable population.
Related Concept Videos
Socioemotional Development during Infancy
Primary Temperament Types
Relationship with Parents: Attachment
The Nativist Approach
Environmental Influences on Intelligence
Relationship with Other Adult Family Members and Siblings
Attachment

