We implement the Ising model on a structural connectivity matrix describing the brain at two different resolutions. Tuning the model temperature to its critical value, i.e. at the susceptibility peak, we find a maximal amount of total information transfer between the spin variables. At this point the amount of information that can be redistributed by some nodes reaches a limit and the net dynamics exhibits signature of the law of diminishing marginal returns, a fundamental principle connected to saturated levels of production. Our results extend the recent analysis of dynamical oscillators models on the connectome structure, taking into account lagged and directional influences, focusing only on the nodes that are more prone to became bottl...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
The information processing in the large scale network of the human brain is related to its cognitive...
Dynamical models implemented on the large scale architecture of the human brain may shed light on ho...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
<div><p>We implement the Ising model on a structural connectivity matrix describing the brain at two...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We analyze the information flow in the Ising model on two real networks, describing the brain at th...
We analyze the information flow in the Ising model on two real networks, describing the brain at th...
We consider an anatomical connectivity matrix (66 nodes), obtained via diffusion spectrum imaging (D...
<p>a,b: 66-nodes connectome. c,d: 998-nodes connectome. a: The following quantities are depicted ver...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
The information processing in the large scale network of the human brain is related to its cognitive...
Dynamical models implemented on the large scale architecture of the human brain may shed light on ho...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
<div><p>We implement the Ising model on a structural connectivity matrix describing the brain at two...
We implement the Ising model on a structural connectivity matrix describing the brain at two differe...
We analyze the information flow in the Ising model on two real networks, describing the brain at th...
We analyze the information flow in the Ising model on two real networks, describing the brain at th...
We consider an anatomical connectivity matrix (66 nodes), obtained via diffusion spectrum imaging (D...
<p>a,b: 66-nodes connectome. c,d: 998-nodes connectome. a: The following quantities are depicted ver...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
We analyze simple dynamical network models which describe the limited capacity of nodes to process t...
The information processing in the large scale network of the human brain is related to its cognitive...
Dynamical models implemented on the large scale architecture of the human brain may shed light on ho...