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Maps of random walks on complex networks reveal community structure

Proceedings of the National Academy of Sciences · 2008 · Vol. 105(4) · pp. 1118–1123
Martin RosvallCarl T. Bergstrom

Abstract

To comprehend the multipartite organization of large-scale biological and social systems, we introduce an information theoretic approach that reveals community structure in weighted and directed networks. We use the probability flow of random walks on a network as a proxy for information flows in the real system and decompose the network into modules by compressing a description of the probability flow. The result is a map that both simplifies and highlights the regularities in the structure and their relationships. We illustrate the method by making a map of scientific communication as captured in the citation patterns of >6,000 journals. We discover a multicentric organization with fields that vary dramatically in size and degree of integration into the network of science. Along the backbone of the network-including physics, chemistry, molecular biology, and medicine-information flows bidirectionally, but the map reveals a directional pattern of citation from the applied fields to the basic sciences.

Complex Network Analysis TechniquesBioinformatics and Genomic NetworksGene Regulatory Network AnalysisInformation flowComputer scienceRandom walkComplex networkTheoretical computer scienceCitationMultipartiteNetwork scienceBiological networkScientific communication

MeSH terms

Information TheoryMarkov ChainsPeriodicals as TopicScienceBibliometricsBiomedical Research

Funding

  • National Institute of General Medical Sciences
Citations
4,599
FWCI
66.89
field-weighted impact
References
36
Percentile
100%
vs. same field & year
Citations per year
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References
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Finding community structure in very large networks
Physical Review E · 2004 · 7,389 citations
Modeling by shortest data description
Automatica · 1978 · 5,959 citations
Fast algorithm for detecting community structure in networks
Physical Review E · 2004 · 5,449 citations
Finding and evaluating community structure in networks
Physical Review E · 2004 · 13,957 citations
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