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Mathematical Biosciences and Engineering : MBE|August 3, 2013
Graph-theoretic conditions for zero-eigenvalue Turing instability in general chemical reaction networksMaya Mincheva, Gheorghe CraciunMathematical Biosciences|June 16, 2012
Turing-Hopf instability in biochemical reaction networks arising from pairs of subnetworksMaya Mincheva, Marc R RousselJournal of Mathematical Biology|June 2, 2007
Graph-theoretic methods for the analysis of chemical and biochemical networks. I. Multistability and oscillations in ordinary differential equation modelsMaya Mincheva, Marc R RousselThe Journal of Chemical Physics|December 6, 2006
A graph-theoretic method for detecting potential Turing bifurcationsMaya Mincheva, Marc R RousselJournal of Mathematical Biology|June 2, 2007
Graph-theoretic methods for the analysis of chemical and biochemical networks. II. Oscillations in networks with delaysMaya Mincheva, Marc R RousselJournal of Theoretical Biology|April 16, 2013
Reciprocal enzyme regulation as a source of bistability in covalent modification cyclesRonny Straube, Carsten ConradiJournal of Mathematical Biology|July 12, 2011
Multistationarity in mass action networks with applications to ERK activationCarsten Conradi, Dietrich FlockerziBMC Systems Biology|March 13, 2016
Challenges in horizontal model integrationKatrin Kolczyk, Carsten ConradiBulletin of Mathematical Biology|June 14, 2017
Parametric Sensitivity Analysis of Oscillatory Delay Systems with an Application to Gene RegulationBrian Ingalls, Maya Mincheva, Marc R RousselMolecular Biosystems|July 17, 2013
Network representations and methods for the analysis of chemical and biochemical pathwaysConner I Sandefur, Maya Mincheva, Santiago SchnellPageof 4