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Procedia Computer Science|October 9, 2010
Design of a dynamic model of genes with multiple autonomous regulatory modules by evolutionary computationsAlexander V Spirov, David M HollowayPlos One|March 21, 2015
Mid-embryo patterning and precision in Drosophila segmentation: Krüppel dual regulation of hunchbackDavid M Holloway, Alexander V SpirovIn Silico Biology|May 24, 2003
Making the body plan: precision in the genetic hierarchy of Drosophila embryo segmentationAlexander V Spirov, David M HollowayPlos One|April 25, 2017
Transcriptional bursting in Drosophila development: Stochastic dynamics of eve stripe 2 expressionDavid M Holloway, Alexander V SpirovProcedia Computer Science|December 10, 2013
Modeling the evolution of gene regulatory networks for spatial patterning in embryo developmentAlexander V Spirov, David M HollowayThescientificworldjournal|February 1, 2013
In silico evolution of gene cooption in pattern-forming gene networksAlexander V Spirov, Marat A Sabirov, David M HollowayJournal of Bioinformatics and Computational Biology|April 29, 2016
Sequential construction of a model for modular gene expression control, applied to spatial patterning of the Drosophila gene hunchbackAlexander V Spirov, Ekaterina M Myasnikova, David M HollowayJournal of Bioinformatics and Computational Biology|July 22, 2024
Body plan evolvability: The role of variability in gene regulatory networksAlexander V Spirov, Ekaterina M Myasnikova, David M HollowayJournal of Bioinformatics and Computational Biology|April 10, 2014
In silico evolution of the hunchback gene indicates redundancy in cis-regulatory organization and spatial gene expressionElizaveta A Zagrijchuk, Marat A Sabirov, David M Holloway, et al.Information Sciences|March 14, 2015
Forced evolution in silico by artificial transposons and their genetic operators: The ant navigation problemLeonid Zamdborg, David M Holloway, Juan J Merelo, et al.Pageof 4