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Organization of Excitable Dynamics in Hierarchical Biological Networks
Author(s) -
Mark MüllerLinow,
Claus C. Hilgetag,
MarcThorsten Hütt
Publication year - 2008
Publication title -
plos computational biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.628
H-Index - 182
eISSN - 1553-7358
pISSN - 1553-734X
DOI - 10.1371/journal.pcbi.1000190
Subject(s) - modularity (biology) , centrality , biological network , hierarchical network model , network topology , node (physics) , computer science , topology (electrical circuits) , subnetwork , network dynamics , dynamic network analysis , complex network , hierarchical organization , network formation , biology , computer network , bioinformatics , mathematics , physics , genetics , management , discrete mathematics , combinatorics , quantum mechanics , world wide web , economics
This study investigates the contributions of network topology features to the dynamic behavior of hierarchically organized excitable networks. Representatives of different types of hierarchical networks as well as two biological neural networks are explored with a three-state model of node activation for systematically varying levels of random background network stimulation. The results demonstrate that two principal topological aspects of hierarchical networks, node centrality and network modularity, correlate with the network activity patterns at different levels of spontaneous network activation. The approach also shows that the dynamic behavior of the cerebral cortical systems network in the cat is dominated by the network's modular organization, while the activation behavior of the cellular neuronal network of Caenorhabditis elegans is strongly influenced by hub nodes. These findings indicate the interaction of multiple topological features and dynamic states in the function of complex biological networks.

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