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Published on: November 21, 2023
Specialization and integration of functional thalamocortical connectivity in the human infant
Hilary Toulmin1, Christian F Beckmann2, Jonathan O'Muircheartaigh3
1Centre for the Developing Brain, Division of Imaging Sciences and Biomedical Engineering, King's College London, St. Thomas' Hospital, London SE1 7EH, United Kingdom;
Insights
Brain development in infants shows that thalamocortical connections resemble adult patterns early on. Premature birth alters these connections, impacting cognitive functions.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Functional Neuroimaging
Background:
- Thalamocortical connections are crucial for brain development and mature rapidly before birth.
- Aberrant maturation during this period is linked to neurodevelopmental disorders.
Purpose of the Study:
- To define functional thalamocortical connectivity in infants at the typical time of birth.
- To investigate the impact of prematurity on these connections and subsequent brain development.
Main Methods:
- Functional magnetic resonance imaging (fMRI) was used to measure blood oxygen level-dependent (BOLD) signals in 66 infants (47 premature, 19 term).
- Independent component analysis (ICA) and seed-based correlations were employed to segment the thalamus and parcellate the cortex.
- Functional connectivity was analyzed in relation to gestational age and cortical regions.
Main Results:
- Infant thalamocortical functional parcellation closely resembled adult patterns.
- Heteromodal association cortex showed more widespread thalamic representations than primary sensory cortex.
- Extreme prematurity correlated with increased thalamus-sensory cortex connectivity but decreased connectivity in prefrontal and other associative regions.
Conclusions:
- Functional integration via thalamocortical connections in early infancy relies on topographic organization within the thalamus.
- Premature extrauterine exposure alters network development, affecting maturation of networks supporting cognitive and executive functions.
Abstract:
Connections between the thalamus and cortex develop rapidly before birth, and aberrant cerebral maturation during this period may underlie a number of neurodevelopmental disorders. To define functional thalamocortical connectivity at the normal time of birth, we used functional MRI (fMRI) to measure blood oxygen level-dependent (BOLD) signals in 66 infants, 47 of whom were at high risk of neurocognitive impairment because of birth before 33 wk of gestation and 19 of whom were term infants. We segmented the thalamus based on correlation with functionally defined cortical components using independent component analysis (ICA) and seed-based correlations. After parcellating the cortex using ICA and segmenting the thalamus based on dominant connections with cortical parcellations, we observed a near-facsimile of the adult functional parcellation. Additional analysis revealed that BOLD signal in heteromodal association cortex typically had more widespread and overlapping thalamic representations than primary sensory cortex. Notably, more extreme prematurity was associated with increased functional connectivity between thalamus and lateral primary sensory cortex but reduced connectivity between thalamus and cortex in the prefrontal, insular and anterior cingulate regions. This work suggests that, in early infancy, functional integration through thalamocortical connections depends on significant functional overlap in the topographic organization of the thalamus and that the experience of premature extrauterine life modulates network development, altering the maturation of networks thought to support salience, executive, integrative, and cognitive functions.
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