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PMID: 22223930 Published · ppublish English Journal Article

DEEP-differential evolution entirely parallel method for gene regulatory networks.

The Journal of supercomputing ·Vol. 57 ·No. 2 ·2011-01-01 ·Pages 172-178

Kozlov K, Samsonov A

Abstract

The Differential Evolution Entirely Parallel (DEEP) method is applied to the biological data fitting problem. We introduce a new migration scheme, in which the best member of the branch substitutes the oldest member of the next branch that provides a high speed of the algorithm convergence. We analyze the performance and efficiency of the developed algorithm on a test problem of finding the regulatory interactions within the network of gap genes that control the development of early Drosophila embryo. The parameters of a set of nonlinear differential equations are determined by minimizing the total error between the model behavior and experimental observations. The age of the individuum is defined by the number of iterations this individuum survived without changes. We used a ring topology for the network of computational nodes. The computer codes are available upon request.

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kozlov Konstantin
Department of Computational Biology, State Polytechnical University, St. Petersburg, 195251, Russia, [email protected].
Samsonov Alexander
References (3)
3 references, click to expand
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  2. FlyEx, the quantitative atlas on segmentation gene expression at cellular resolution.
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Article Info
Journal
The Journal of supercomputing
Abbr.
J Supercomput
ISSN
0920-8542
Published
2011-01-01
Pages
172-178
Language
English
Region
United States
NLM ID
9889997
PMCID
PMC3250518
Grants
NCRR NIH HHS · R01 RR007801 · United States
NCRR NIH HHS · R01 RR007801-18S1 · United States
NCRR NIH HHS · R01 RR007801-19 · United States
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