White matter reflects the childhood exposome
Macedo, B.; Bagautdinova, J.; Meisler, S. L.; Cieslak, M.; Sisk, L. M.; Davatazikos, C.; Franco, A. R.; Hettwer, M. D.; Keller, A. S.; Kiar, G.; Luo, A. C.; Mackey, A. P.; Milham, M. P.; Moore, T. M.; Sydnor, V. J.; Sun, K. Y.; Yeh, F.-C.; Barzilay, R.; Fair, D. A.; Shinohara, R. T.; Alexander-Bloch, A.; Satterthwaite, T. D.
Show abstract
The childhood environment is critical for brain development. However, most neuroimaging studies examine individual environmental measures (e.g., socioeconomic status) or a limited set of exposures, obscuring how the combination of complex, real-world exposures jointly influence brain development. Here we investigated how white matter shape and tissue properties are linked to the childhood exposome, a multidimensional measure capturing over 300 environmental exposures. Using multi-shell diffusion MRI from 8,183 children (ages 9-10) in the ABCD study, we quantified microstructural and macrostructural properties across 62 person-specific white matter tracts. The exposome showed widespread and highly replicable associations with both white matter microstructure and macrostructure: more advantaged environments were associated with larger tract macrostructure and lower orientation dispersion. Principal component analysis revealed that the dominant axis of exposome-white matter covariation aligns with the cortical sensorimotor-association hierarchy, such that tracts spanning this hierarchy exhibit the strongest associations with the exposome. Multivariate models demonstrated that patterns of white matter features explained 25% of the variance in the exposome in unseen individuals. Notably, white matter-based prediction of cognition was markedly reduced after accounting for the exposome ([~]82% reduction in explained variance), indicating that brain-cognition associations overlap substantially with variance captured by the exposome. These findings generalized to independent data from the Healthy Brain Network (n=869), which differs substantially from ABCD in MRI acquisition, participant selection, and childhood environments. Together, these results suggest that white matter architecture strongly reflects the childhood environment.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Neurotransmitter Transporter/Receptor Co-Expression Shares Organizational Traits With Brain Structure And Function 96%
- No effect of additional education on long-term brain structure: a preregistered natural experiment in thousands of individuals. 96%
- Reconfigurations of cortical manifold structure during reward-based motor learning 96%
Similar papers in this journal
Similar papers in this journal
- Phenotypic and genetic associations of quantitative magnetic susceptibility in UK Biobank brain imaging 97%
- Regional, circuit, and network heterogeneity of brain abnormalities in psychiatric disorders 96%
- Topographic organization of the human subcortex unveiled with functional connectivity gradients 96%
Similar papers in this journal
- White matter connections of human ventral temporal cortex are organized by cytoarchitecture, eccentricity, and category-selectivity from birth 96%
- Higher rostral locus coeruleus integrity is associated with better memory performance in older adults 96%
- Genetic Underpinnings of Risky Behaviour Relate to Altered Neuroanatomy 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.