Biological systems and, in particular, cellular signal transduction pathways are characterised by their high complexity. Mathematical models describing these processes might be of great help to gain qualitative and, most importantly, quantitative knowledge about such complex systems. However, a detailed mathematical description of these systems leads to nearly unmanageably large models, especially when combining models of different signalling pathways to study cross-talk phenomena. Therefore, simplification of models becomes very important. Different methods are available for model reduction of biological models. Importantly, most of the common model reduction methods cannot be applied to cellular signal transduction pathways. Using as an e...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
We present a computational model that offers an integrated quantitative, dynamic, and topological re...
The complexity of biochemical systems, stemming from both the large number of components and the int...
Biological systems and, in particular, cellular signal transduction pathways are characterised by th...
peer reviewedBiological systems and, in particular, cellular signal transduction pathways are charac...
Biological systems and, in particular, cellular signal transduction pathways are characterised by th...
Biological system models are routinely developed in modern systems biology research following approp...
The mathematical model of cell signal transduction networks is highly nonlinear and complex, which i...
his article is a critical review of computational techniques used to model, analyse and simulate sig...
Cellular signalling pathways are fundamental to the control and regulation of cell behavior. Unders...
Abstract. Cellular signalling pathways are fundamental to the control and regulation of cell behavio...
BACKGROUND: The epidermal growth factor receptor (EGFR) signaling pathway plays a key role in regula...
The complexity of networks of biological signalling pathways is such that the development of simpli...
This paper introduces compelling problems of biological systems and signaling networks to show how e...
Background: Cellular responses to extracellular perturbations require signaling pathways to capture ...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
We present a computational model that offers an integrated quantitative, dynamic, and topological re...
The complexity of biochemical systems, stemming from both the large number of components and the int...
Biological systems and, in particular, cellular signal transduction pathways are characterised by th...
peer reviewedBiological systems and, in particular, cellular signal transduction pathways are charac...
Biological systems and, in particular, cellular signal transduction pathways are characterised by th...
Biological system models are routinely developed in modern systems biology research following approp...
The mathematical model of cell signal transduction networks is highly nonlinear and complex, which i...
his article is a critical review of computational techniques used to model, analyse and simulate sig...
Cellular signalling pathways are fundamental to the control and regulation of cell behavior. Unders...
Abstract. Cellular signalling pathways are fundamental to the control and regulation of cell behavio...
BACKGROUND: The epidermal growth factor receptor (EGFR) signaling pathway plays a key role in regula...
The complexity of networks of biological signalling pathways is such that the development of simpli...
This paper introduces compelling problems of biological systems and signaling networks to show how e...
Background: Cellular responses to extracellular perturbations require signaling pathways to capture ...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
We present a computational model that offers an integrated quantitative, dynamic, and topological re...
The complexity of biochemical systems, stemming from both the large number of components and the int...