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Gene regulatory network / Systems biology / Eric H. Davidson / Network motif / Cellular differentiation / Bioinformatics / Dario Floreano / Biology / Gene expression / Networks


In silico Evolution of Biological Clocks with Genetic Regulatory Networks Johannes F. Knabe 1,∗ , Maria J. Schilstra 2 , Chrystopher L. Nehaniv 1,2 Adaptive Systems 1 and BioComputation 2 Research Groups University of
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Document Date: 2008-07-16 13:48:30


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City

Berlin / London / /

Company

Scientific American Books Inc. / MIT Press / Genomic Regulatory Systems / Genetic Regulatory Networks / Adaptive Systems / /

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IndustryTerm

control systems / evolutionary algorithm / regulatory networks / internal chemical composition / inverse outputs network / random networks / /

Organization

Research Groups University / MIT / University of Hertfordshire / /

Person

Robert L. Goldstone / Alessandro Vespignani / Chrystopher L. Nehaniv / Peter Walter / Dario Floreano / Maria J. Schilstra / Peter Dittrich / Larry S. Yaeger / Arthur T. Winfree / Martin Raff / Cytodifferentiation / Bruce Alberts / Alexander Johnson / Julian Lewis / Uri Alon / Johannes F. Knabe / Keith Roberts / Tom Quick / Mark A. Bedau / Eric H. Davidson / /

Position

editor / /

PublishedMedium

Nature Genetics / Molecular Biology / /

Technology

evolutionary algorithm / Gene expression / /

SocialTag