AbstractIn order to understand and analyse genetic regulatory networks (GRNs), the complex control structures which regulate cellular systems, well supported qualitative formal modelling techniques are required. In this paper, we make a case that biological systems can be qualitatively modelled by speed-independent circuits. We apply techniques from asynchronous circuit design, based on Signal Transition Graphs (STGs), to modelling, visualising and analysing GRNs. STGs are a Petri net based model that has been extensively used in asynchronous circuit design. We investigate how the sufficient conditions ensuring that an STG can be implemented by a speed-independent circuit can be interpreted in the context of GRNs. We observe that these prop...
AbstractThe complexity of biological regulatory networks often defies the intuition of the biologist...
Recent studies have shown that small genetic regulatory networks (GRNs) can be evolved in silico dis...
This chapter is concerned with modeling and simulating the dynamics of gene regulatory networks (GRN...
PhD ThesisThe development of post-genomic technologies has led to a paradigm shift in the way we st...
AbstractGene Regulatory Networks (GRNs) represent the interactions among genes regulating the activa...
Abstract. In order to understand complex genetic regulatory networks researchers require automated f...
The development of post-genomic technologies has led to a paradigm shift in the way we study genetic...
Computer tools are needed in systems biology to analyse qualitatively the dynamics of Gene Regulator...
Biological cell behaviours emerge from complex patterns of interactions between genes and their prod...
Abstract Regulatory networks are at the core of all biological functions from bio-chemical pathways ...
International audienceBiological networks of large dimensions, with their diagram of interactions, a...
International audienceBiological networks of large dimensions, with their diagram of interactions, a...
International audienceRegulatory networks are at the core of all biological functions from bio-chemi...
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...
AbstractThe complexity of biological regulatory networks often defies the intuition of the biologist...
Recent studies have shown that small genetic regulatory networks (GRNs) can be evolved in silico dis...
This chapter is concerned with modeling and simulating the dynamics of gene regulatory networks (GRN...
PhD ThesisThe development of post-genomic technologies has led to a paradigm shift in the way we st...
AbstractGene Regulatory Networks (GRNs) represent the interactions among genes regulating the activa...
Abstract. In order to understand complex genetic regulatory networks researchers require automated f...
The development of post-genomic technologies has led to a paradigm shift in the way we study genetic...
Computer tools are needed in systems biology to analyse qualitatively the dynamics of Gene Regulator...
Biological cell behaviours emerge from complex patterns of interactions between genes and their prod...
Abstract Regulatory networks are at the core of all biological functions from bio-chemical pathways ...
International audienceBiological networks of large dimensions, with their diagram of interactions, a...
International audienceBiological networks of large dimensions, with their diagram of interactions, a...
International audienceRegulatory networks are at the core of all biological functions from bio-chemi...
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...
AbstractThe complexity of biological regulatory networks often defies the intuition of the biologist...
Recent studies have shown that small genetic regulatory networks (GRNs) can be evolved in silico dis...
This chapter is concerned with modeling and simulating the dynamics of gene regulatory networks (GRN...