Logical models are well-suited to capture salient dynamical properties of regulatory networks. For networks controlling cell fate decisions, cell fates are associated with model attractors (stable states or cyclic attractors) whose identification and reachability properties are particularly relevant. While synchronous updates assume unlikely instantaneous or identical rates associated with component changes, the consideration of asynchronous updates is more realistic but, for large models, may hinder the analysis of the resulting non-deterministic concurrent dynamics. This complexity hampers the study of asymptotical behaviors, and most existing approaches suffer from efficiency bottlenecks, being generally unable to handle cyclical attract...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
This article is part of the research topic: Logical Modeling of Cellular Processes: From Software De...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
19 pages, 2 figures, 2 algorithms and 2 tablesMotivation: Models of discrete concurrent systems ofte...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
Biological networks, such as genetic regulatory networks, often contain positive and negative feedba...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
This article is part of the research topic: Logical Modeling of Cellular Processes: From Software De...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
International audienceLogical models are well-suited to capture salient dynamical properties of regu...
Logical models are well-suited to capture salient dynamical properties of regulatory networks. For n...
19 pages, 2 figures, 2 algorithms and 2 tablesMotivation: Models of discrete concurrent systems ofte...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
Biological networks, such as genetic regulatory networks, often contain positive and negative feedba...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
International audienceIn this paper, we propose a SAT-based method for finding attractors of bounded...
This article is part of the research topic: Logical Modeling of Cellular Processes: From Software De...