bioRxiv · 10.1101/435719
The neurocognitive architecture of fluid ability in children and adolescents
Abstract
Fluid intelligence is the capacity to solve novel problems in the absence of task-specific knowledge, and is highly predictive of outcomes like educational attainment and psychopathology. Here, we modelled the neurocognitive architecture of fluid intelligence in two cohorts: CALM (N = 551, aged 5 - 17 years) and NKI-RS (N = 335, aged 6 - 17 years). We used multivariate Structural Equation Modelling to test a preregistered watershed model of fluid intelligence. This model predicts that white matter contributes to intermediate cognitive phenotypes, like working memory and processing speed, which, in turn, contribute to fluid intelligence. We found that this model performed well for both samples and explained large amounts of variance in fluid intelligence (R2CALM = 51.2%, R2NKI-RS = 78.3%). The relationship between cognitive abilities and white matter differed with age, showing a dip in strength around ages 7 - 12 years. This age-effect may reflect a reorganization of the neurocognitive architecture around pre- and early puberty. Overall, these findings highlight that intelligence is part of a complex hierarchical system of partially independent effects.
Source connections
Explore related subjects
Keep this discovery
Fuhrmann, D., Simpson-Kent, I. L., Bathelt, J., Kievit, R. A.. 2018-10-05. The neurocognitive architecture of fluid ability in children and adolescents. https://doi.org/10.1101/435719
Cite the original work for its findings. Save a collection to share your selection of sources.