We present COSBI LAB Language ( $\mathcal{L}$ for short), a simple modeling language for biochemical systems. $\mathcal{L}$ features stochastic multiset rewriting, defined in part through rewriting rules, and in part through imperative code. We provide a continuous-time Markov chain semantics for $\mathcal{L}$ at three different abstraction levels, linked by Galois connections. We then describe a simulation algorithm for the most concrete semantics, which is then adapted to work at higher abstract levels while improving space and time performance. Doing so results in the well-known Gillespie’s Direct Method, as well as in a further optimized algorithm
Both experimental and computational biology is becoming increasingly automated. Laboratory experimen...
Models of biochemical systems presented as a set of formal reaction rules can be interpreted in diff...
International audienceSystems biologists build models of bio-molecular processes from knowledge acqu...
We present COSBI LAB Language (L for short), a simple modeling language for biochemical systems. L f...
Abstract BioScape P , a probabilistic version of BioScape, is a new modeling language for a state-de...
International audienceNumerous programming languages based on process calculi have been developed fo...
AbstractNumerous programming languages based on process calculi have been developed for biological m...
Numerous programming languages based on process calculi have been develo-ped for biological modellin...
AbstractWe introduce Stochastic String MultiSet Rewriting (sSMSR), and propose this formalism as an ...
Motivation: Compartments and membranes are the basis of cell topology and more than 30 % of the huma...
4We introduce Stochastic String MultiSet Rewriting (sSMSR), and propose this formalism as an interme...
Systems biology seeks to understand the cellular-level dynamics arising from the interaction of cell...
Abstract. We propose React(C), an expressive programming language for stochastic modeling and simula...
We apply quantitative formal methods to a domain from the life sciences: biochemical signalling path...
Abstract. Recent progress in Biology and data-production technologies push research toward a new int...
Both experimental and computational biology is becoming increasingly automated. Laboratory experimen...
Models of biochemical systems presented as a set of formal reaction rules can be interpreted in diff...
International audienceSystems biologists build models of bio-molecular processes from knowledge acqu...
We present COSBI LAB Language (L for short), a simple modeling language for biochemical systems. L f...
Abstract BioScape P , a probabilistic version of BioScape, is a new modeling language for a state-de...
International audienceNumerous programming languages based on process calculi have been developed fo...
AbstractNumerous programming languages based on process calculi have been developed for biological m...
Numerous programming languages based on process calculi have been develo-ped for biological modellin...
AbstractWe introduce Stochastic String MultiSet Rewriting (sSMSR), and propose this formalism as an ...
Motivation: Compartments and membranes are the basis of cell topology and more than 30 % of the huma...
4We introduce Stochastic String MultiSet Rewriting (sSMSR), and propose this formalism as an interme...
Systems biology seeks to understand the cellular-level dynamics arising from the interaction of cell...
Abstract. We propose React(C), an expressive programming language for stochastic modeling and simula...
We apply quantitative formal methods to a domain from the life sciences: biochemical signalling path...
Abstract. Recent progress in Biology and data-production technologies push research toward a new int...
Both experimental and computational biology is becoming increasingly automated. Laboratory experimen...
Models of biochemical systems presented as a set of formal reaction rules can be interpreted in diff...
International audienceSystems biologists build models of bio-molecular processes from knowledge acqu...