Mathematical models of biochemical reaction networks in the form of ordinary differential equations can exhibit all sorts of complex dynamical behaviour. It is for example known, that even a single layer of an MAPK cascade can exhibit bistability (i.e.\ there exist multiple (positive) steady state solutions). It is almost a common-place that bistability or some other form of multistationarity are observed in many biochemical reaction networks, especially if the focus is on signal transduction or cell cycle regulation. However, multistationarity is only exhibited if the parameter vector is located in an appropriate region of parameter space. To find these regions, for example by using numerical tools like bifurcation analysis, is a nontrivia...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Since quantitative knowledge of the complex (bio)chemical reaction networks is often very limited, f...
Mathematical models of biochemical reaction networks in the form of ordinary differential equations ...
Mathematical models of biochemical reaction networks in the form of ordinary differential equations ...
Abstract. Mitogen-activated protein kinase (MAPK) signaling pathways play an essential role in the t...
Mitogen-activated protein kinase (MAPK) signaling pathways play an essential role in the transductio...
Switch like responses appear as common strategies in the regulation of cellular systems. Here we pre...
In Systems Biology quantitative models in form of parameter--dependent Ordinary Differential Equatio...
<div><p>Switch like responses appear as common strategies in the regulation of cellular systems. Her...
Ordinary Differential Equations (ODEs) are an important tool in many areas of Quantitative Biology. ...
Prompted by the recent growing evidence of oscillatory behavior involving MAPK cascades we present a...
Ordinary Differential Equations (ODEs) are an important tool in many areas of Quantitative Biology. ...
We consider a problem from biological network analysis of determining regions in a parameter space o...
The MAPK cascade is responsible for transmitting information in the cy-toplasm of the cell and regul...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Since quantitative knowledge of the complex (bio)chemical reaction networks is often very limited, f...
Mathematical models of biochemical reaction networks in the form of ordinary differential equations ...
Mathematical models of biochemical reaction networks in the form of ordinary differential equations ...
Abstract. Mitogen-activated protein kinase (MAPK) signaling pathways play an essential role in the t...
Mitogen-activated protein kinase (MAPK) signaling pathways play an essential role in the transductio...
Switch like responses appear as common strategies in the regulation of cellular systems. Here we pre...
In Systems Biology quantitative models in form of parameter--dependent Ordinary Differential Equatio...
<div><p>Switch like responses appear as common strategies in the regulation of cellular systems. Her...
Ordinary Differential Equations (ODEs) are an important tool in many areas of Quantitative Biology. ...
Prompted by the recent growing evidence of oscillatory behavior involving MAPK cascades we present a...
Ordinary Differential Equations (ODEs) are an important tool in many areas of Quantitative Biology. ...
We consider a problem from biological network analysis of determining regions in a parameter space o...
The MAPK cascade is responsible for transmitting information in the cy-toplasm of the cell and regul...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Feinberg’s Chemical Reaction Network Theory (CRNT) connects the structure of a biochemical reaction ...
Since quantitative knowledge of the complex (bio)chemical reaction networks is often very limited, f...