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A Novel Method for Involving Women of Color at High Risk for Preterm Birth in Research Priority Setting
Published on: January 12, 2018
White matter microstructure correlates with mathematics but not word reading performance in 13-year-old children born
Simonne E Collins1, Megan Spencer-Smith2, Ines Mürner-Lavanchy3
1Victorian Infant Brain Studies, Murdoch Children's Research Institute, Melbourne, Victoria, Australia; Turner Institute for Brain and Mental Health, School of Psychological Sciences, Monash University, Melbourne, Australia; Developmental Imaging, Murdoch Children's Research Institute, Melbourne, Victoria, Australia.
Insights
Very preterm birth is linked to poorer math skills and altered white matter. Lower neurite density in white matter is associated with impaired mathematics performance in children born very preterm and full term.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Cognitive Science
Background:
- Individuals born very preterm (VPT) face higher risks for academic and neurodevelopmental challenges.
- The relationship between academic performance and brain structure, particularly white matter, in VPT individuals remains unclear.
Purpose of the Study:
- To examine associations between math and reading performance and white matter microstructure in 13-year-old VPT and full-term (FT) children.
- To determine if these associations differ in VPT children with mathematical impairments.
Main Methods:
- Utilized diffusion tensor imaging and advanced modeling (NODDI, SMT) with Tract-Based Spatial Statistics.
- Analyzed data from 114 VPT and 36 FT children at 13 years of age.
- Assessed mathematics and reading performance, comparing VPT children with and without impairments.
Main Results:
- Mathematics performance positively correlated with fractional anisotropy and neurite density, and negatively with radial and mean diffusivities across widespread brain regions.
- VPT children with mathematics impairment showed significantly reduced neurite density compared to non-impaired VPT children.
- No significant associations were found between reading performance and white matter microstructure parameters.
Conclusions:
- Alterations in white matter microstructure, specifically reduced neurite density, are linked to poorer mathematics performance in VPT and FT children.
- Findings highlight the role of white matter integrity in mathematical abilities.
- Further research is needed to elucidate the white matter-reading performance link in this age group.
Abstract:
Individuals born very preterm (VPT; <32 weeks' gestational age) are at increased risk of impaired mathematics and word reading performance, as well as widespread white matter microstructural alterations compared with individuals born full term (FT; ≥37 weeks' gestational age). To date, the link between academic performance and white matter microstructure is not well understood. This study aimed to investigate the associations between mathematics and reading performance with white matter microstructure in 114 VPT and 36 FT 13-year-old children. Additionally, we aimed to investigate whether the association of mathematics and reading performance with white matter microstructure in VPT children varied as a function of impairment. To do this, we used diffusion tensor imaging and advanced diffusion modelling techniques (Neurite Orientation Dispersion and Density Imaging and the Spherical Mean Technique), combined with a whole-brain analysis approach (Tract-Based Spatial Statistics). Mathematics performance across VPT and FT groups was positively associated with white matter microstructural measurements of fractional anisotropy and neurite density, and negatively associated with radial and mean diffusivities in widespread, bilateral regions. Furthermore, VPT children with a mathematics impairment (>1 standard deviation below FT mean) had significantly reduced neurite density compared with VPT children without an impairment. Reading performance was not significantly associated with any of the white matter microstructure parameters. Additionally, the associations between white matter microstructure and mathematics and reading performance did not differ significantly between VPT and FT groups. Our findings suggest that alterations in white matter microstructure, and more specifically lower neurite density, are associated with poorer mathematics performance in 13-year-old VPT and FT children. More research is required to understand the association between reading performance and white matter microstructure in 13-year-old children.
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