International audienceWe consider a generic biological process described by a dynamical system, subject to an input signal with a high-frequency periodic component. The rapid oscillations of the input signal induce inherently multiscale dynamics, motivating order-reduction techniques. It is intuitive that the system behaviour is well approximated by its response to the averaged input signal. However, changes to the high-frequency component that preserve the average signal are beyond the reach of such intuitive reasoning. In this study, we explore system response under the influence of such an input signal by exploiting the timescale separation between high-frequency input variations and system response time. Employing the asymptotic method ...
Many biological mechanisms can be understood as a complex interaction of chemical reactions. In orde...
Biochemical reaction networks tend to exhibit behaviour on more than one timescale and they are inev...
Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear d...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Driven nonlinear dynamical systems are everywhere in biology. Powerful mathematical tools like Fouri...
In this paper I shall discuss, in a general way, some basic dynamical properties of biochemical reac...
<p>Biochemical reaction networks with a sufficiently large number of molecules may be represented as...
International audienceCellular processes such as metabolism, decision making in development and diff...
We describe a mechanism for pronounced biochemical oscillations, relevant to microscopic systems, su...
AbstractIt has hitherto not been possible to analyze the control of oscillatory dynamic cellular pro...
Biochemical oscillations are prevalent in living organisms. Systems with a small number of constitue...
Biochemical reaction networks often involve reactions that take place on different time scales, givi...
The coherence and robustness of biological systems is an astonishing phenomenon that depends on osci...
© 2014, The Author(s). The relationship between components of biochemical network and the resulting ...
Many biological mechanisms can be understood as a complex interaction of chemical reactions. In orde...
Biochemical reaction networks tend to exhibit behaviour on more than one timescale and they are inev...
Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear d...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Driven nonlinear dynamical systems are everywhere in biology. Powerful mathematical tools like Fouri...
In this paper I shall discuss, in a general way, some basic dynamical properties of biochemical reac...
<p>Biochemical reaction networks with a sufficiently large number of molecules may be represented as...
International audienceCellular processes such as metabolism, decision making in development and diff...
We describe a mechanism for pronounced biochemical oscillations, relevant to microscopic systems, su...
AbstractIt has hitherto not been possible to analyze the control of oscillatory dynamic cellular pro...
Biochemical oscillations are prevalent in living organisms. Systems with a small number of constitue...
Biochemical reaction networks often involve reactions that take place on different time scales, givi...
The coherence and robustness of biological systems is an astonishing phenomenon that depends on osci...
© 2014, The Author(s). The relationship between components of biochemical network and the resulting ...
Many biological mechanisms can be understood as a complex interaction of chemical reactions. In orde...
Biochemical reaction networks tend to exhibit behaviour on more than one timescale and they are inev...
Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear d...