An algorithm to analyze stability of gene-expression patterns |
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Authors: | J. Gebert,S.W. Pickl,R. Wü nschiers |
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Affiliation: | a Institute of Mathematics, Center for Applied Computer Science, University of Cologne, Weyertal 80, 50931 Cologne, Germany b Institute of Applied Mathematics, METU Middle East Technical University, 06531 Ankara, Turkey c Institute for Genetics, University of Cologne, Zülpicher Str. 47, 50674 Köln, Germany |
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Abstract: | ![]() Many problems in the field of computational biology consist of the analysis of so-called gene-expression data. The successful application of approximation and optimization techniques, dynamical systems, algorithms and the utilization of the underlying combinatorial structures lead to a better understanding in that field. For the concrete example of gene-expression data we extend an algorithm, which exploits discrete information. This is lying in extremal points of polyhedra, which grow step by step, up to a possible stopping.We study gene-expression data in time, mathematically model it by a time-continuous system, and time-discretize this system. By our algorithm we compute the regions of stability and instability. We give a motivating introduction from genetics, present biological and mathematical interpretations of (in)stability, point out structural frontiers and give an outlook to future research. |
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Keywords: | Algorithmic computational biology Dynamical system Equilibrium Stability Polytopes and structural frontiers |
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