AbstractThis paper presents a stochastic modelling framework based on stochastic automata networks (SANs) for the analysis of complex biochemical reaction networks. Our approach takes into account the discrete character of quantities of components (i.e. the individual populations of the involved chemical species) and the inherent probabilistic nature of microscopic molecular collisions. Moreover, as for process calculi that have recently been applied to systems in biology, the SAN approach has the advantage of a modular design process being adequate for abstraction purposes. The associated composition operator leads to an elegant and compact representation of the underlying continuous-time Markov chain in form of a Kronecker product. SANs h...
BackgroundIntrinsic fluctuations due to the stochastic nature of biochemical reactions can have larg...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Abstract Background Intrinsic fluctuations due to the stochastic nature of biochemical reactions can...
AbstractThis paper presents a stochastic modelling framework based on stochastic automata networks (...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Chemical and biochemical systems are presented as collectives of interacting stochastic automata: ea...
Abstract Background Intrinsic fluctuations due to the...
Abstract Background Intrinsic fluctuations due to the...
BackgroundIntrinsic fluctuations due to the stochastic nature of biochemical reactions can have larg...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Abstract Background Intrinsic fluctuations due to the stochastic nature of biochemical reactions can...
The importance of stochasticity within biological systems has been shown repeatedly during the last ...
University of Minnesota Ph.D. dissertation. June 2018. Major: Chemical Engineering. Advisor: Prodrom...
BackgroundIntrinsic fluctuations due to the stochastic nature of biochemical reactions can have larg...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Abstract Background Intrinsic fluctuations due to the stochastic nature of biochemical reactions can...
AbstractThis paper presents a stochastic modelling framework based on stochastic automata networks (...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Chemical and biochemical systems are presented as collectives of interacting stochastic automata: ea...
Abstract Background Intrinsic fluctuations due to the...
Abstract Background Intrinsic fluctuations due to the...
BackgroundIntrinsic fluctuations due to the stochastic nature of biochemical reactions can have larg...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Abstract Background Intrinsic fluctuations due to the stochastic nature of biochemical reactions can...
The importance of stochasticity within biological systems has been shown repeatedly during the last ...
University of Minnesota Ph.D. dissertation. June 2018. Major: Chemical Engineering. Advisor: Prodrom...
BackgroundIntrinsic fluctuations due to the stochastic nature of biochemical reactions can have larg...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Abstract Background Intrinsic fluctuations due to the stochastic nature of biochemical reactions can...