The correlated noise-based switches and stochastic resonance are investigated in a bistable single gene switching system driven by an additive noise (environmental fluctuations), a multiplicative noise (fluctuations of the degradation rate). The correlation between the two noise sources originates from on the lysis-lysogeny pathway system of the λ phage. The steady state probability distribution is obtained by solving the time-independent Fokker-Planck equation, and the effects of noises are analyzed. The effects of noises on the switching time between the two stable states (mean first passage time) is investigated by the numerical simulation. The stochastic resonance phenomenon is analyzed by the power amplification factor. The results sho...
It is well known that noise plays an important role in genetic regulatory networks. It can not only ...
It is well known that white noise can induce switch behaviors in bistable systems. However, recent e...
Genetically identical cells can show phenotypic variability. This is often caused by stochastic even...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
Abstract. The stochastic mutual repressor model is analysed using perturba-tion methods. This simple...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
Noise can induce various dynamical behaviors in nonlinear systems. White noise perturbed systems hav...
Abstract—The roles of time delay on gene switch and stochastic resonance are systematically explored...
Turning genes on and off is a mechanism by which cells and tissues make phenotypic decisions. Gene n...
AbstractTranscriptional regulation is an inherently noisy process. The origins of this stochastic be...
It is well known that noise plays an important role in genetic regulatory networks. It can not only ...
It is well known that white noise can induce switch behaviors in bistable systems. However, recent e...
Genetically identical cells can show phenotypic variability. This is often caused by stochastic even...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
Abstract. The stochastic mutual repressor model is analysed using perturba-tion methods. This simple...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
Noise can induce various dynamical behaviors in nonlinear systems. White noise perturbed systems hav...
Abstract—The roles of time delay on gene switch and stochastic resonance are systematically explored...
Turning genes on and off is a mechanism by which cells and tissues make phenotypic decisions. Gene n...
AbstractTranscriptional regulation is an inherently noisy process. The origins of this stochastic be...
It is well known that noise plays an important role in genetic regulatory networks. It can not only ...
It is well known that white noise can induce switch behaviors in bistable systems. However, recent e...
Genetically identical cells can show phenotypic variability. This is often caused by stochastic even...