Starting from a biochemical signalling pathway model expresses in a process algebra enriched with quantitative information, we automatically derive both continuous-space and discrete-space representations suitable for numerical evaluation. We compare results obtained using approximate stochastic simulation thereby exposing a flaw in the use of the differentiation procedure producing misleading results
Abstract: Computer modeling of molecular signaling cascades can provide useful insight into the unde...
Large-scale protein signalling networks are useful for exploring complex biochemical pathways but do...
his article is a critical review of computational techniques used to model, analyse and simulate sig...
Starting from a biochemical signalling pathway model expressed in a process algebra enriched with qu...
Modelling of the dynamics of biochemical reaction networks typically proceeds by solving ordinary di...
Cancer research has been revolutionised by recent technological advances that allow scientists to pr...
BACKGROUND: Appropriately formulated quantitative computational models can support researchers in un...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
We describe a quantitative modelling and analysis approach for signal transduction networks. We il...
In this chapter, we describe general methods used to create dynamic computational models of kinase s...
We describe a new modelling and analysis approach for signal transduction networks in the presence o...
This paper examines the influence of the Raf Kinase Inhibitor Protein (RKIP) on the Extracellular si...
Cellular signalling pathways are fundamental to the control and regulation of cell behaviour. Under...
Appropriately formulated quantitative computational models can support researchers in understanding ...
Stronger computational modelling of signalling pathways using both continuous an
Abstract: Computer modeling of molecular signaling cascades can provide useful insight into the unde...
Large-scale protein signalling networks are useful for exploring complex biochemical pathways but do...
his article is a critical review of computational techniques used to model, analyse and simulate sig...
Starting from a biochemical signalling pathway model expressed in a process algebra enriched with qu...
Modelling of the dynamics of biochemical reaction networks typically proceeds by solving ordinary di...
Cancer research has been revolutionised by recent technological advances that allow scientists to pr...
BACKGROUND: Appropriately formulated quantitative computational models can support researchers in un...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
We describe a quantitative modelling and analysis approach for signal transduction networks. We il...
In this chapter, we describe general methods used to create dynamic computational models of kinase s...
We describe a new modelling and analysis approach for signal transduction networks in the presence o...
This paper examines the influence of the Raf Kinase Inhibitor Protein (RKIP) on the Extracellular si...
Cellular signalling pathways are fundamental to the control and regulation of cell behaviour. Under...
Appropriately formulated quantitative computational models can support researchers in understanding ...
Stronger computational modelling of signalling pathways using both continuous an
Abstract: Computer modeling of molecular signaling cascades can provide useful insight into the unde...
Large-scale protein signalling networks are useful for exploring complex biochemical pathways but do...
his article is a critical review of computational techniques used to model, analyse and simulate sig...