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Directed network modules

Gergely Palla et al 2007 New J. Phys. 9 186   doi: 10.1088/1367-2630/9/6/186  Help

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Gergely Palla1, Illés J Farkas1,2, Péter Pollner1, Imre Derényi2 and Tamás Vicsek1,2
1 Statistical and Biological Physics Research Group of HAS, Pázmány Péter Sétány 1A, Budapest, H-1117 Hungary
2 Department of Biological Physics, Eötvös University, Pázmány Péter Sétány 1A, Budapest, H-1117 Hungary
E-mail: pallag@angel.elte.hu

Part of Focus on Complex Networked Systems: Theory and Application

Abstract. A search technique locating network modules, i.e. internally densely connected groups of nodes in directed networks is introduced by extending the clique percolation method originally proposed for undirected networks. After giving a suitable definition for directed modules we investigate their percolation transition in the Erdős–Rényi graph both analytically and numerically. We also analyse four real-world directed networks, including Google's own web-pages, an email network, a word association graph and the transcriptional regulatory network of the yeast Saccharomyces cerevisiae. The obtained directed modules are validated by additional information available for the nodes. We find that directed modules of real-world graphs inherently overlap and the investigated networks can be classified into two major groups in terms of the overlaps between the modules. Accordingly, in the word-association network and Google's web-pages, overlaps are likely to contain in-hubs, whereas the modules in the email and transcriptional regulatory network tend to overlap via out-hubs.

Received 15 February 2007
Published 28 June 2007

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