bioRxiv · 10.1101/372110
State-specific individualized functional networks form a predictive signature of brain state
Abstract
There is extensive evidence that human brain functional organization is dynamic, varying within a subject as the brain switches between tasks demands. This functional organization also varies across subjects, even when they are all engaged in similar tasks. Currently, we lack a comprehensive model that unifies the two dimensions of variation (brain state and subject). Using fMRI data obtained across multiple task-evoked and rest conditions (which we operationally define as brain states) and across multiple subjects, we develop a state-and subject-specific functional network parcellation (the assignment of nodes to networks). Our parcellation approach provides a measure of how node-to-network assignment (NNA) changes across states and across subjects. We demonstrate that the brains functional networks are not spatially fixed, but reconfigure with brain state. This reconfiguration is robust and reliable to such an extent that it can be used to predict brain state with accuracies up to 97%.
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Salehi, M., Karbasi, A., Barron, D. S., Scheinost, D., Constable, R. T.. 2018-07-19. State-specific individualized functional networks form a predictive signature of brain state. https://doi.org/10.1101/372110
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