AbstractIn the realm of system biology, the study of regulatory networks leads biologists to the development of increasingly large, detailed and complex models. These complex models, replicating the dynamics of cell processes, are then analyzed using different approaches to obtain predictions. Genetic oscillations play a main role in the activity of signal transduction by maintaining the cascade of internal biochemical reactions with the extracellular environment. Molecular alterations in the performance of such behavioral rhythms can lead to severe pathological problems, e.g. cancer. Different formal approaches have been proposed to analyze Biological Regulatory Networks (BRNs) Such approaches mainly involve the use of non-functional and B...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
Genetic regulatory networks are biochemical reaction systems, consisting of a network of interacting...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
AbstractThe aim of the paper is to revisit the model of Biological Regulatory Networks (BRN) which w...
Over the last few decades, the emergence of a wide range of new technologies has produced a massive ...
AbstractAnalysing dynamics of large biological regulatory networks (BRNs) calls for innovative metho...
AbstractWe present an approximation scheme for deriving reaction rate equations of genetic regulator...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
AbstractIn this article we propose a novel formalism to model and analyse gene regulatory networks u...
Oscillations lie at the core of many biological processes, from the cell cycle, to circadian oscill...
Over the last twenty years advances in systems biology have changed our views on microbial communiti...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceIn this article, we propose a refinement of the modeling of genetic regulatory...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
Genetic regulatory networks are biochemical reaction systems, consisting of a network of interacting...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
AbstractThe aim of the paper is to revisit the model of Biological Regulatory Networks (BRN) which w...
Over the last few decades, the emergence of a wide range of new technologies has produced a massive ...
AbstractAnalysing dynamics of large biological regulatory networks (BRNs) calls for innovative metho...
AbstractWe present an approximation scheme for deriving reaction rate equations of genetic regulator...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
AbstractIn this article we propose a novel formalism to model and analyse gene regulatory networks u...
Oscillations lie at the core of many biological processes, from the cell cycle, to circadian oscill...
Over the last twenty years advances in systems biology have changed our views on microbial communiti...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
International audienceIn this article, we propose a refinement of the modeling of genetic regulatory...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...
Genetic regulatory networks are biochemical reaction systems, consisting of a network of interacting...
International audienceThe modelling of gene regulatory networks (GRNs) has classically been addresse...