International audienceIn systems biology, the number of available models of cellular processes increases rapidly, but re-using models in different contexts or for different questions remains a challenging issue. In this paper, we study the coupling of different models playing a role in the mammalian cell cycle and in cancer therapies. We show how the formalization of experimental observations in temporal logic with numerical constraints can be used to compute the unknown coupling kinetics parameter values agreeing with experimental data. This constraint-based approach to computing with partial information is illustrated through the design of a complex model of the mammalian cell cycle, the circadian clock, the p53/Mdm2 DNA-damage repair sys...
Experimental observations have put in evidence autonomous self-sustained cir-cadian oscillators in m...
International audienceBiological rhythms occur at different levels in the organism. In single cells,...
International audienceExperimental observations have put in evidence autonomous self-sustained circa...
AbstractIn systems biology, the number of available models of cellular processes has increased rapid...
International audienceIn systems biology, the number of available models of cellular processes incre...
The daily rhythm can influence the proliferation rate of many cell types. In the mammalian system th...
International audienceIn systems biology, the number of models of cellular processes increases rapid...
International audienceThe mammalian clock and cell cycle are two essential biological oscillators. I...
The daily rhythm can influence the proliferation rate of many cell types [1]. In the mammalian syste...
Accepted for publication in Journal of Theoretical Biology, post-print versionInternational audience...
The mammalian cell cycle is governed by a network of cyclin/Cdk complexes which signal the progressi...
Gating of cell division by the circadian clock is well known, yet its mechanism is little understood...
In this dissertation, we explore the use of temporal logic and model checking in systems biology. Ou...
The cell division cycle and the circadian clock are two fundamental processes of cellular control th...
Experimental observations have put in evidence autonomous self-sustained cir-cadian oscillators in m...
International audienceBiological rhythms occur at different levels in the organism. In single cells,...
International audienceExperimental observations have put in evidence autonomous self-sustained circa...
AbstractIn systems biology, the number of available models of cellular processes has increased rapid...
International audienceIn systems biology, the number of available models of cellular processes incre...
The daily rhythm can influence the proliferation rate of many cell types. In the mammalian system th...
International audienceIn systems biology, the number of models of cellular processes increases rapid...
International audienceThe mammalian clock and cell cycle are two essential biological oscillators. I...
The daily rhythm can influence the proliferation rate of many cell types [1]. In the mammalian syste...
Accepted for publication in Journal of Theoretical Biology, post-print versionInternational audience...
The mammalian cell cycle is governed by a network of cyclin/Cdk complexes which signal the progressi...
Gating of cell division by the circadian clock is well known, yet its mechanism is little understood...
In this dissertation, we explore the use of temporal logic and model checking in systems biology. Ou...
The cell division cycle and the circadian clock are two fundamental processes of cellular control th...
Experimental observations have put in evidence autonomous self-sustained cir-cadian oscillators in m...
International audienceBiological rhythms occur at different levels in the organism. In single cells,...
International audienceExperimental observations have put in evidence autonomous self-sustained circa...