Background Complex networks can often be decomposed into less complex sub-networks whose struc-tures can give hints about the functional organization of the network as a whole. However, these structural motifs can only tell one part of the functional story because in this analysis each node and edge is treated on an equal footing. In real networks, two motifs that are topologically identical but whose nodes perform very different functions will play very different roles in the network. Methodology/Principal Findings Here, we combine structural information derived from the topology of the neuronal network of the nematode C. elegans with information about the biological function of these nodes, thus coloring nodes by function. We discover tha...
<div><p>A major goal of systems neuroscience is to decipher the structure-function relationship in n...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
<div><p><i>Caenorhabditis elegans</i>, a soil dwelling nematode, is evolutionarily rudimentary and c...
Background: Complex networks can often be decomposed into less complex sub-networks whose structures...
Background: Complex networks can often be decomposed into less complex sub-networks whose structures...
Background: Complex networks can often be decomposed into less complex sub-networks whose structur...
Despite considerable effort over the past several decades, it is unclear how an organism’s nervous s...
We study complex networks in which the nodes of the network are tagged with different colors dependi...
The complete structure and connectivity of the Caenorhabditis elegans nervous system (“mind of...
Thesis: S.M., Massachusetts Institute of Technology, School of Architecture and Planning, Program in...
Abstract. The structure of real complex networks is often modular, with sets of nodes more connected...
Despite recent interest in reconstructing neuronal networks, complete wiring diagrams on the level o...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
We approach the C. elegans connectome as an information processing network that receives input from ...
Caenorhabditis elegans, a soil dwelling nematode, is evolutionarily rudimentary and contains only ∼ ...
<div><p>A major goal of systems neuroscience is to decipher the structure-function relationship in n...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
<div><p><i>Caenorhabditis elegans</i>, a soil dwelling nematode, is evolutionarily rudimentary and c...
Background: Complex networks can often be decomposed into less complex sub-networks whose structures...
Background: Complex networks can often be decomposed into less complex sub-networks whose structures...
Background: Complex networks can often be decomposed into less complex sub-networks whose structur...
Despite considerable effort over the past several decades, it is unclear how an organism’s nervous s...
We study complex networks in which the nodes of the network are tagged with different colors dependi...
The complete structure and connectivity of the Caenorhabditis elegans nervous system (“mind of...
Thesis: S.M., Massachusetts Institute of Technology, School of Architecture and Planning, Program in...
Abstract. The structure of real complex networks is often modular, with sets of nodes more connected...
Despite recent interest in reconstructing neuronal networks, complete wiring diagrams on the level o...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
We approach the C. elegans connectome as an information processing network that receives input from ...
Caenorhabditis elegans, a soil dwelling nematode, is evolutionarily rudimentary and contains only ∼ ...
<div><p>A major goal of systems neuroscience is to decipher the structure-function relationship in n...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
<div><p><i>Caenorhabditis elegans</i>, a soil dwelling nematode, is evolutionarily rudimentary and c...