AbstractAs technological advances allow a better identification of cellular networks, large-scale molecular data are swiftly produced, allowing the construction of large and detailed molecular interaction maps. One approach to unravel the dynamical properties of such complex systems consists in deriving coarse-grained dynamical models from these maps, which would make the salient properties emerge. We present here a method to automatically derive such models, relying on the abstract interpretation framework to formally relate model behaviour at different levels of description. We illustrate our approach on two relevant case studies: the formation of a complex involving a protein adaptor, and a race between two competing biochemical reaction...
International audienceWe advocate the use of qualitative models for the analysis of shift equilibria...
In this work, we begin by considering the qualitative modeling of biological regulatory systems usin...
Complex systems of numerous interacting biomolecules dictate cellular behavior. To better understan...
AbstractAs technological advances allow a better identification of cellular networks, large-scale mo...
International audienceAs technological advances allow a better identification of cellular networks, ...
AbstractAdaptation and behavior are characteristics of life which are fundamentally dynamic. If we w...
The human body is composed of a large collection of cells,\the building blocks of life". In each cel...
Progress in advancing our understanding of biological systems is limited by their sheer complexity, ...
Abstract Complex molecular biological processes such as transcription and translation, signal transd...
In this work, we begin by considering the qualitative modeling of biological regulatory systems usin...
AbstractAdaptation and behavior are characteristics of life which are fundamentally dynamic. If we w...
A central goal of systems biology is the construction of predictive models of bio-molecular networks...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
International audienceWe advocate the use of qualitative models for the analysis of shift equilibria...
In this work, we begin by considering the qualitative modeling of biological regulatory systems usin...
Complex systems of numerous interacting biomolecules dictate cellular behavior. To better understan...
AbstractAs technological advances allow a better identification of cellular networks, large-scale mo...
International audienceAs technological advances allow a better identification of cellular networks, ...
AbstractAdaptation and behavior are characteristics of life which are fundamentally dynamic. If we w...
The human body is composed of a large collection of cells,\the building blocks of life". In each cel...
Progress in advancing our understanding of biological systems is limited by their sheer complexity, ...
Abstract Complex molecular biological processes such as transcription and translation, signal transd...
In this work, we begin by considering the qualitative modeling of biological regulatory systems usin...
AbstractAdaptation and behavior are characteristics of life which are fundamentally dynamic. If we w...
A central goal of systems biology is the construction of predictive models of bio-molecular networks...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
ObjectiveThe complexity of biochemical networks is enormous and difficult to unravel by intuitive re...
International audienceWe advocate the use of qualitative models for the analysis of shift equilibria...
In this work, we begin by considering the qualitative modeling of biological regulatory systems usin...
Complex systems of numerous interacting biomolecules dictate cellular behavior. To better understan...