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Evolutionary conservation of motif constituents in the yeast protein interaction network.
Evolutionary conservation of motif constituents in the yeast protein interaction network
An evolutionary and functional assessment of regulatory network motifs
An evolutionary and functional assessment of regulatory network motifs
"The overabundance of the network motifs does not have any immediate functional or evolutionary counterpart. A likely reason is that motifs within the networks are not isolated, that is, they strongly aggregate and have important edge and/or node sharing with the rest of the network.
Molecules into Cells: Specifying Spatial Architecture
Molecules into Cells: Specifying Spatial Architectur
The yeast coexpression network has a small-world, scale-free architecture and can be explained by a simple model
The yeast coexpression network has a small-world, scale-free architecture and can be explained by a simple mode
Evolution, Interactions, and Biological Networks
Evolution, Interactions, and Biological Network
A comparison between developmental and direct encodings. An update of the GECCO 2006 Paper \u27The Dead State\u27
A comparison between developmental and direct encodings. An update of the GECCO 2006 Paper \u27The Dead State\u27
The original paper seems to be not included in the proceedings, see here:
http://www.informatik.uni-trier.de/~ley/db/conf/gecco/gecco2006.html
and here:
http://portal.acm.org/citation.cfm?id=114399