Background: The topological structure of the wiring of the mammalian brain cortex plays an important role in shaping the functional dynamics of large-scale neural activity. Due to their central embedding in the network, high degree hub regions and their connections (often referred to as the 'rich club') have been hypothesized to facilitate intermodular neural communication and global integration of information by means of synchronization. Here, we examined the theoretical role of anatomical hubs and their wiring in brain dynamics. The Kuramoto model was used to simulate interaction of cortical brain areas by means of coupled phase oscillators-with anatomical connections between regions derived from diffusion weighted imaging and module assi...
Significant research has investigated synchronisation in brain networks, but the bulk of this work h...
Cortical hubs play a fundamental role in the functional architecture of brain connectivity at rest. ...
The spontaneous emergence of coherent behavior through synchronization plays a key role in neural fu...
Kuramoto model simulation of neural hubs and dynamic synchrony in the human cerebral connectome Rube...
Figure S3. Influences on oscillation frequencies of the modules and hub nodes. For each of the 11 mo...
Understanding the relationship between structural and functional organization represents one of the ...
Figure S5. Modularity increased with hub connectivity suppressed. The ratio between intramodular syn...
Figure S2. Inter- and intramodular synchrony. Each bar plot corresponds to the inter- and intramodul...
Figure S7. Small set of hub nodes perturbed. Perturbation of a smaller set of hub nodes also prevent...
Understanding the relationship between structural and functional organization represents one of the ...
AbstractAt the macroscopic scale, the human brain can be described as a complex network of white mat...
Figure S4. Hub versus random connectivity suppression. When edges were removed from the adjacency ma...
The problem of emergent synchronization patterns in a complex network of coupled oscillators has cau...
The spontaneous emergence of coherent behavior through synchronization plays a key role in neural fu...
AV and PH acknowledge support by Deutsche Forschungsgemeinschaft under Grant No. HO4695/3-1 and with...
Significant research has investigated synchronisation in brain networks, but the bulk of this work h...
Cortical hubs play a fundamental role in the functional architecture of brain connectivity at rest. ...
The spontaneous emergence of coherent behavior through synchronization plays a key role in neural fu...
Kuramoto model simulation of neural hubs and dynamic synchrony in the human cerebral connectome Rube...
Figure S3. Influences on oscillation frequencies of the modules and hub nodes. For each of the 11 mo...
Understanding the relationship between structural and functional organization represents one of the ...
Figure S5. Modularity increased with hub connectivity suppressed. The ratio between intramodular syn...
Figure S2. Inter- and intramodular synchrony. Each bar plot corresponds to the inter- and intramodul...
Figure S7. Small set of hub nodes perturbed. Perturbation of a smaller set of hub nodes also prevent...
Understanding the relationship between structural and functional organization represents one of the ...
AbstractAt the macroscopic scale, the human brain can be described as a complex network of white mat...
Figure S4. Hub versus random connectivity suppression. When edges were removed from the adjacency ma...
The problem of emergent synchronization patterns in a complex network of coupled oscillators has cau...
The spontaneous emergence of coherent behavior through synchronization plays a key role in neural fu...
AV and PH acknowledge support by Deutsche Forschungsgemeinschaft under Grant No. HO4695/3-1 and with...
Significant research has investigated synchronisation in brain networks, but the bulk of this work h...
Cortical hubs play a fundamental role in the functional architecture of brain connectivity at rest. ...
The spontaneous emergence of coherent behavior through synchronization plays a key role in neural fu...