Structural Properties of the Caenorhabditis elegans Neuronal Network
Lav R. Varshney, Beth L. Chen, Eric Paniagua, David H. Hall, and, Dmitri B. Chklovskii

TL;DR
This study reconstructs and analyzes the complete neuronal wiring diagram of C. elegans, revealing network properties and activity patterns that inform understanding of neural function and behavior.
Contribution
It provides a comprehensive, self-consistent wiring diagram of C. elegans neurons and introduces methods to visualize and analyze network properties and activity propagation.
Findings
Network exhibits small-world properties
Identifies neurons with central roles in information processing
Activity patterns suggest substrates for behaviors
Abstract
Despite recent interest in reconstructing neuronal networks, complete wiring diagrams on the level of individual synapses remain scarce and the insights into function they can provide remain unclear. Even for Caenorhabditis elegans, whose neuronal network is relatively small and stereotypical from animal to animal, published wiring diagrams are neither accurate nor complete and self-consistent. Using materials from White et al. and new electron micrographs we assemble whole, self-consistent gap junction and chemical synapse networks of hermaphrodite C. elegans. We propose a method to visualize the wiring diagram, which reflects network signal flow. We calculate statistical and topological properties of the network, such as degree distributions, synaptic multiplicities, and small-world properties, that help in understanding network signal propagation. We identify neurons that may play…
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Taxonomy
TopicsGenetics, Aging, and Longevity in Model Organisms · Photoreceptor and optogenetics research · Neural dynamics and brain function
