AbstractThe aim of the paper is to revisit the model of Biological Regulatory Networks (BRN) which was proposed by René Thomas to model the interactions between a set of genes. We give a formal semantics for BRN in terms of transition systems which formalizes the evolution rules given by René Thomas. Then we show how to use this model to find interesting properties of a BRN like the set of stable states, cycles etc using tools for analyzing transition systems
AbstractGene Regulatory Networks (GRNs) represent the interactions among genes regulating the activa...
AbstractIn this paper, we aim at modeling and analyzing the regulation processes in multi-cellular b...
Abstract. In this article, we propose a refinement of the modeling of genetic regulatory networks ba...
AbstractThe aim of the paper is to revisit the model of Biological Regulatory Networks (BRN) which w...
International audienceThe aim of the paper is to revisit the model of Biological Regulatory Networks...
International audienceThe aim of the paper is to revisit the model of Biological Regulatory Networks...
AbstractIn this paper, we aim at modeling and analyzing the regulation processes in multi-cellular b...
AbstractIn the realm of system biology, the study of regulatory networks leads biologists to the dev...
Abstract. In the course of understanding biological regulatory networks (BRN), scientists usually st...
International audienceIn this article, we propose a refinement of the modeling of genetic regulatory...
International audienceThis chapter presents how the formal methods can be used to analyze biological...
The network of interacting regulatory signals within a cell comprises one of the most complex and po...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
AbstractAnalysing dynamics of large biological regulatory networks (BRNs) calls for innovative metho...
AbstractGene Regulatory Networks (GRNs) represent the interactions among genes regulating the activa...
AbstractIn this paper, we aim at modeling and analyzing the regulation processes in multi-cellular b...
Abstract. In this article, we propose a refinement of the modeling of genetic regulatory networks ba...
AbstractThe aim of the paper is to revisit the model of Biological Regulatory Networks (BRN) which w...
International audienceThe aim of the paper is to revisit the model of Biological Regulatory Networks...
International audienceThe aim of the paper is to revisit the model of Biological Regulatory Networks...
AbstractIn this paper, we aim at modeling and analyzing the regulation processes in multi-cellular b...
AbstractIn the realm of system biology, the study of regulatory networks leads biologists to the dev...
Abstract. In the course of understanding biological regulatory networks (BRN), scientists usually st...
International audienceIn this article, we propose a refinement of the modeling of genetic regulatory...
International audienceThis chapter presents how the formal methods can be used to analyze biological...
The network of interacting regulatory signals within a cell comprises one of the most complex and po...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
AbstractAnalysing dynamics of large biological regulatory networks (BRNs) calls for innovative metho...
AbstractGene Regulatory Networks (GRNs) represent the interactions among genes regulating the activa...
AbstractIn this paper, we aim at modeling and analyzing the regulation processes in multi-cellular b...
Abstract. In this article, we propose a refinement of the modeling of genetic regulatory networks ba...