Architecture of phase relationships among neural oscillations is central for their functional significance but has remained theoretically poorly understood. We use phenomenological model of delay-coupled oscillators with increasing degree of topological complexity to identify underlying principles by which the spatio-temporal structure of the brain governs the phase lags between oscillatory activity at distant regions. Phase relations and their regions of stability are derived and numerically confirmed for two oscillators and for networks with randomly distributed or clustered bimodal delays, as a first approximation for the brain structural connectivity. Besides in-phase, clustered delays can induce anti-phase synchronization for certain f...
Network couplings of oscillatory large-scale systems, such as the brain, have a space-time structure...
r r Abstract: This article presents, for the first time, a practical method for the direct quantific...
International audienceNetwork couplings of oscillatory large-scale systems, such as the brain, have ...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
<div><p>Architecture of phase relationships among neural oscillations is central for their functiona...
Architecture of phase relationships among neural oscillations is central for their functional signif...
Architecture of phase relationships among neural oscillations is central for their functional signif...
BACKGROUND: Synchronized oscillation in cortical networks has been suggested as a mechanism for dive...
Synchronized oscillation in cortical networks has been suggested as a mechanism for diverse function...
Network couplings of oscillatory large-scale systems, such as the brain, have a space-time structure...
r r Abstract: This article presents, for the first time, a practical method for the direct quantific...
International audienceNetwork couplings of oscillatory large-scale systems, such as the brain, have ...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
International audienceArchitecture of phase relationships among neural oscillations is central for t...
<div><p>Architecture of phase relationships among neural oscillations is central for their functiona...
Architecture of phase relationships among neural oscillations is central for their functional signif...
Architecture of phase relationships among neural oscillations is central for their functional signif...
BACKGROUND: Synchronized oscillation in cortical networks has been suggested as a mechanism for dive...
Synchronized oscillation in cortical networks has been suggested as a mechanism for diverse function...
Network couplings of oscillatory large-scale systems, such as the brain, have a space-time structure...
r r Abstract: This article presents, for the first time, a practical method for the direct quantific...
International audienceNetwork couplings of oscillatory large-scale systems, such as the brain, have ...