Bayesian modelling of effective and functional brain connectivity using hierarchical vector autoregressions

Author:

Wegmann Bertil12ORCID,Lundquist Anders3,Eklund Anders24,Villani Mattias5

Affiliation:

1. Division of Statistics and Machine Learning, Department of Computer and Information Science, Linköping University , Linköping , Sweden

2. Center for Medical Image Science and Visualization (CMIV), Linköping University , Linköping , Sweden

3. Department of Statistics, Umeå School of Business, Economics and Statistics (USBE), Umeå University , Umeå , Sweden

4. Division of Medical Informatics, Department of Biomedical Engineering, Linköping University , Linköping , Sweden

5. Department of Statistics, Stockholm University , Stockholm , Sweden

Abstract

Abstract Analysis of brain connectivity is important for understanding how information is processed by the brain. We propose a novel Bayesian vector autoregression hierarchical model for analysing brain connectivity within resting-state functional magnetic resonance imaging, and apply it to simulated data and a real data set with subjects in different groups. Our approach models functional and effective connectivity simultaneously and allows for both group- and single-subject inference. We combine analytical marginalization with Hamiltonian Monte Carlo to obtain highly efficient posterior sampling. We show that our model gives similar inference for effective connectivity compared to models with a common covariance matrix to all subjects, but more accurate inference for functional connectivity between regions compared to models with more restrictive covariance structures. A Stan implementation of our model is available on GitHub.

Funder

Riksbankens Jubileumsfond

Center for Industrial Information Technology (CENIIT) at Linöping University

Swedish Research Council

Publisher

Oxford University Press (OUP)

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