Intrinsic noise is a common phenomenon in biochemical reaction networks and may affect the occurence and amplitude of sustained oscillations in the states of the network. To evaluate properties of such oscillations in the time domain, it is usually required to conduct long-term stochastic simulations, using for example the Gillespie algorithm. In this paper, we present a new method to compute the amplitude distribution of the oscillations without the need for long-term stochastic simulations. By the derivation of the method, we also gain insight into the structural features underlying the stochastic oscillations. The method is applicable to a wide class of non-linear stochastic differential equations that exhibit stochastic oscillations. Th...
A typical biological cell lives in a small volume at room temperature; the noise effect on the cell ...
3In the first part of this invited paper we review the role of both extrinsic and intrinsic stochast...
A major challenge in systems biology is to infer the parameters of regulatory networks that operate ...
Series MAPK enzymatic cascades, ubiquitously found in signaling networks, act as signal amplifiers a...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
Series MAPK enzymatic cascades, ubiquitously found in signaling networks, act as signal amplifiers a...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
3After being considered as a nuisance to be filtered out, it became increasingly clear that noises p...
We used various analytical and numerical techniques to elucidate signal propagation in a small enzym...
We used various analytical and numerical techniques to elucidate signal propagation in a small enzym...
After being considered as a nuisance to be filtered out, it became recently clear that biochemical n...
3After being considered as a nuisance to be filtered out, it became recently clear that biochemical ...
Cells live with fluctuations arising from various sources and occurring at a broad spectrum of scale...
Many biological mechanisms can be understood as a complex interaction of chemical reactions. In orde...
We consider the general problem of describing the dynamics of subnetworks of larger biochemical reac...
A typical biological cell lives in a small volume at room temperature; the noise effect on the cell ...
3In the first part of this invited paper we review the role of both extrinsic and intrinsic stochast...
A major challenge in systems biology is to infer the parameters of regulatory networks that operate ...
Series MAPK enzymatic cascades, ubiquitously found in signaling networks, act as signal amplifiers a...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
Series MAPK enzymatic cascades, ubiquitously found in signaling networks, act as signal amplifiers a...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
3After being considered as a nuisance to be filtered out, it became increasingly clear that noises p...
We used various analytical and numerical techniques to elucidate signal propagation in a small enzym...
We used various analytical and numerical techniques to elucidate signal propagation in a small enzym...
After being considered as a nuisance to be filtered out, it became recently clear that biochemical n...
3After being considered as a nuisance to be filtered out, it became recently clear that biochemical ...
Cells live with fluctuations arising from various sources and occurring at a broad spectrum of scale...
Many biological mechanisms can be understood as a complex interaction of chemical reactions. In orde...
We consider the general problem of describing the dynamics of subnetworks of larger biochemical reac...
A typical biological cell lives in a small volume at room temperature; the noise effect on the cell ...
3In the first part of this invited paper we review the role of both extrinsic and intrinsic stochast...
A major challenge in systems biology is to infer the parameters of regulatory networks that operate ...