Classical multivariate approaches based on Granger causality (GC) which estimate functional connectivity in the brain are almost exclusively based on autoregressive models. Nevertheless, information available from past samples is limited due to both signal autocorrelation and necessarily low model orders. Consequently, multiple time-scales interactions are usually unaccounted for. To overcome these limitations, in this study we propose the use of discrete-time orthogonal Laguerre basis functions within a Wiener-Volterra decomposition of the BOLD signals to perform effective GC assessments of brain functional connectivity. We validate our method in synthetic noisy oscillator networks, and analyze experimental fMRI data from 30 healthy subjec...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
Classical multivariate approaches based on Granger causality (GC) which estimate functional connecti...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...
High-frequency neuroelectric signals like electroencephalography (EEG) or magnetoencephalography (ME...