The large-scale structural ingredients of the brain and neural connectomes have been identified in recent years. These are, similar to the features found in many other real networks: the arrangement of brain regions into modules and the presence of highly connected regions (hubs) forming rich-clubs. Here, we examine how modules and hubs shape the collective dynamics on networks and we find that both ingredients lead to the emergence of complex dynamics. Comparing the connectomes of C. elegans, cats, macaques and humans to surrogate networks in which either modules or hubs are destroyed, we find that functional complexity always decreases in the perturbed networks. A comparison between simulated and empirically obtained resting-state functio...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
The brain of any species can be modeled as a network of regions and connections between those region...
The large-scale structural ingredients of the brain and neural connectomes have been identified in r...
Recent studies demonstrated that the anatomical network of the human brain shows a "rich-club" organ...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
Higher-order connectivity in complex systems described by simplexes of different orders provides a g...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
The brain of any species can be modeled as a network of regions and connections between those region...
The large-scale structural ingredients of the brain and neural connectomes have been identified in r...
Recent studies demonstrated that the anatomical network of the human brain shows a "rich-club" organ...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
In order to promote survival through flexible cognition and goal-directed behaviour, the brain has t...
Higher-order connectivity in complex systems described by simplexes of different orders provides a g...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
Brain function relies on the flexible integration of a diverse set of segregated cortical modules, w...
The brain of any species can be modeled as a network of regions and connections between those region...