<p>Left (Right) graph depicts the network corresponding to a control subject (patient), for 25 bins selected in decreasing Mutual Information order. Nodes color and size represent their degree, while link color codifies the corresponding strength. For sake of clarity, only links with strength greater than are represented.</p
<p><b>(a)</b> The network of the EL network. Node colors represent the Hamming distance from the tar...
The networks are drawn by ordering the nodes by degree with the highest at the top and splitting the...
Networks from three different replicates from simulations with LE = 20 are shown (three of the four ...
<p>A. Underlying network. B. Sample paths, with respondents in red and friends in green. C. True net...
<p>A A simple example network of nodes of 4 different types identified by their structural position....
<p>(<b>a</b>) The reconstructed network from data without using any prior. (<b>b</b>) Reconstructed ...
Networks, biological molecules, neural structures can be represented as graphs. Data processing and ...
<p><b>A</b> Example of TE reconstructed connectivity in a subset of 49 neurons (identified by black ...
<p>The left panel represents the status of the network before the network evolution, in which the fo...
<p>Black nodes are the constant nodes, blue are the First-order grouped nodes and grey are the Secon...
<p>Top: The network was constructed from a Rössler system and consists of nodes. Bottom: The networ...
Graph representation of example 16-node synthetic networks: a) BA, b) ER, c) WS; and degree distribu...
<p>Each brain region is represented by a sphere. Sphere size = mean connectivity degree; sphere tran...
<p>Examples of synaptic reach (top) as well as the link size distribution (bottom) for the: A) two-...
<p>(I,II,III) In the 3-D network visualizations, edge color represents link weight, nodal color corr...
<p><b>(a)</b> The network of the EL network. Node colors represent the Hamming distance from the tar...
The networks are drawn by ordering the nodes by degree with the highest at the top and splitting the...
Networks from three different replicates from simulations with LE = 20 are shown (three of the four ...
<p>A. Underlying network. B. Sample paths, with respondents in red and friends in green. C. True net...
<p>A A simple example network of nodes of 4 different types identified by their structural position....
<p>(<b>a</b>) The reconstructed network from data without using any prior. (<b>b</b>) Reconstructed ...
Networks, biological molecules, neural structures can be represented as graphs. Data processing and ...
<p><b>A</b> Example of TE reconstructed connectivity in a subset of 49 neurons (identified by black ...
<p>The left panel represents the status of the network before the network evolution, in which the fo...
<p>Black nodes are the constant nodes, blue are the First-order grouped nodes and grey are the Secon...
<p>Top: The network was constructed from a Rössler system and consists of nodes. Bottom: The networ...
Graph representation of example 16-node synthetic networks: a) BA, b) ER, c) WS; and degree distribu...
<p>Each brain region is represented by a sphere. Sphere size = mean connectivity degree; sphere tran...
<p>Examples of synaptic reach (top) as well as the link size distribution (bottom) for the: A) two-...
<p>(I,II,III) In the 3-D network visualizations, edge color represents link weight, nodal color corr...
<p><b>(a)</b> The network of the EL network. Node colors represent the Hamming distance from the tar...
The networks are drawn by ordering the nodes by degree with the highest at the top and splitting the...
Networks from three different replicates from simulations with LE = 20 are shown (three of the four ...