Over the past decades, network neuroscience has played a fundamental role in the understanding of large-scale brain connectivity architecture. Brains, and more generally nervous systems, can be modeled as sets of elements (neurons, assemblies, or cortical chunks) that dynamically interact through a highly structured and adaptive neurocircuitry. An interesting property of neural networks is that elements rich in connections are central to the network organization and tend to interconnect strongly with each other, forming so-called rich clubs. The ubiquity of rich-club organization across different species and scales of investigation suggests that this topology could be a distinctive feature of biological systems with information processing c...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Recent studies demonstrated that the anatomical network of the human brain shows a "rich-club" organ...
The large-scale structural ingredients of the brain and neural connectomes have been identified in r...
Over the past decades, network neuroscience has played a fundamental role in the understanding of la...
Over the past decades, network neuroscience has played a fundamental role in the understanding of la...
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...
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/nmodules, ...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Recent studies demonstrated that the anatomical network of the human brain shows a "rich-club" organ...
The large-scale structural ingredients of the brain and neural connectomes have been identified in r...
Over the past decades, network neuroscience has played a fundamental role in the understanding of la...
Over the past decades, network neuroscience has played a fundamental role in the understanding of la...
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...
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/nmodules, ...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Graph-theoretical analysis of brain connectivity data has revealed significant features of brain net...
Recent studies demonstrated that the anatomical network of the human brain shows a "rich-club" organ...
The large-scale structural ingredients of the brain and neural connectomes have been identified in r...