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Published on: November 20, 2015
The influence of preterm birth on structural alterations of the vision-deprived brain
Catherine Y Wan1, Amanda G Wood, Jian Chen
1Psychological Sciences, The University of Melbourne, Victoria, Australia. cwan@bidmc.harvard.edu
Insights
Brain structure differences in blind individuals are not solely due to blindness, as prematurity also plays a role. This study reveals distinct brain alterations in full-term blind individuals compared to sighted peers.
Area of Science:
- Neuroscience
- Developmental Neuroscience
Background:
- Brain structure differences between blind and sighted individuals are under-researched.
- Previous studies often included individuals blinded by retinopathy of prematurity, a condition linked to premature birth.
- Pediatric research suggests premature birth itself causes structural brain differences, potentially confounding blindness-specific findings.
Purpose of the Study:
- To investigate gray and white matter differences in blind versus sighted individuals.
- To differentiate the effects of blindness from those of premature birth on brain structure.
- To identify specific brain regions affected by blindness in individuals born at term.
Main Methods:
- Voxel-based morphometry (VBM) was employed.
- 24 blind and 16 sighted individuals were analyzed.
- Subgroup analysis considered individuals born prematurely versus at term.
Main Results:
- Blind individuals born preterm showed gray matter differences, but not white matter differences, compared to those born at term.
- Excluding preterm individuals revealed significant brain structure differences between blind and sighted groups.
- Full-term blind individuals exhibited gray matter decreases in visual and parietal regions and increases in the globus pallidus, alongside white matter decreases in the cuneus and lingual gyrus.
Conclusions:
- Structural brain alterations are evident in blind individuals, independent of blindness onset age.
- Premature birth significantly impacts neurodevelopmental outcomes and brain structure in blind individuals.
- Findings underscore the necessity of accounting for prematurity in studies of blindness-related brain changes.
Abstract:
Differences in brain structures between blind and sighted individuals have not been widely investigated. Furthermore, existing studies have included individuals who were blinded by retinopathy of prematurity, a condition that is associated with premature birth. Recent pediatric research has reported structural differences in individuals who were born prematurely, suggesting that some of the structural abnormalities previously observed in blind individuals may be related to prematurity rather than being specific to blindness. In the present study, we used voxel-based morphometry to investigate gray and white matter differences between 24 blind and 16 sighted individuals. Of the blind individuals, six were born prematurely and 18 at term. Compared to those born at term, blind individuals born preterm showed differences in gray, but not white, matter volumes in various brain regions. When the preterm individuals were excluded from analysis, there were significant differences between blind and sighted individuals. Full-term blind individuals showed regional gray matter decreases in the cuneus, lingual gyrus, middle occipital gyrus, precuneus, inferior and superior parietal lobules, and the thalamus, and gray matter increases in the globus pallidus. They also showed regional white matter decreases in the cuneus, lingual gyrus, and the posterior cingulate. These differences were observed in blind individuals irrespective of blindness onset age, providing evidence for structural alterations in the mature brain. Our findings highlight the importance of considering the potential impact of premature birth on neurodevelopmental outcomes in studies of blind individuals.
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