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Updated: Nov 1, 2025

A Within-subjects Experimental Protocol to Assess the Effects of Social Input on Infant EEG
Published on: May 3, 2017
The emergence of a theta social brain network during infancy
Bauke van der Velde1, Tonya White2, Chantal Kemner1
1Department of Experimental Psychology, Helmholtz Institute, Utrecht University, Utrecht, the Netherlands.
Insights
Infant brain development shows significant changes in theta networks, shifting from a parietal-occipital to a frontoparietal network. This reconfiguration is linked to enhanced social information processing in babies.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Infants' socio-cognitive abilities undergo rapid development in the first year.
- Early social behavior development is crucial for attachment and survival.
- Understanding neural network maturation is key to grasping social developmental disorders.
Purpose of the Study:
- To map the development of functional brain networks during social processing in infants.
- To investigate the role of theta and alpha frequency bands in early social brain development.
Main Methods:
- Longitudinal study of 854 infants at 5 and 10 months.
- Electroencephalography (EEG) to measure brain activity.
- Analysis of theta and alpha frequency bands during social and non-social video viewing.
Main Results:
- Alpha networks remained stable and showed no social selectivity.
- Theta networks exhibited significant global reconfigurations.
- Theta networks shifted from parietal-occipital to frontoparietal, coinciding with social selectivity.
Conclusions:
- The maturation of frontoparietal theta networks is critical for developing social brain functions.
- Theta network reconfiguration supports infants' increasing ability to process social stimuli.
- Findings offer insights into the neural underpinnings of social development and disorders.
Abstract:
Infants' socio-cognitive ability develops dramatically during the first year of life. From the perspective of ontogeny, the early development of social behavior allows for parent-child attachment, which in turn enhances survival. Thus, it is theorized that the development of social behavior, driven by social brain networks, forms the core of developmental acquisitions during this period. Further, understanding the maturation within the neural networks during social development is crucial to obtain a better grasp of the development of social developmental disorders. Therefore, we performed a longitudinal study in 854 infants measured at around 5 and 10 months to map the development of functional networks in the brain when infants were processing social and non-social videos. Using EEG, we focused on the frequency bands most commonly connected to social behavior: theta and alpha. We found that alpha networks remained relatively stable over the first year of life and showed no selectivity for social versus non-social stimuli, theta networks, showed strong global reconfigurations. The development of the theta networks progressed from a parietal occipital network in early infancy to a frontoparietal network towards the end of the first year of life. This reconfiguration coincided with selectivity for social versus non-social stimuli, with infants approaching the end of their first year of life showing increased synchronicity of theta communication when watching social videos versus non-social videos. Our findings provide strong evidence for the involvement of a frontoparietal theta network in the development of the social brain.
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