<div><p>Random effect in cellular systems is an important topic in systems biology and often simulated with Gillespie’s stochastic simulation algorithm (SSA). Abridgment refers to model reduction that approximates a group of reactions by a smaller group with fewer species and reactions. This paper presents a theoretical analysis, based on comparison of the first exit time, for the abridgment on a linear chain reaction model motivated by systems with multiple phosphorylation sites. The analysis shows that if the relaxation time of the fast subsystem is much smaller than the mean firing time of the slow reactions, the abridgment can be applied with little error. This analysis is further verified with numerical experiments for models of bistab...
Abstract: Recent experimental studies elucidating the importance of noise in gene regulation have ig...
A major problem when designing mathematical models of biochemical processes to analyze and explain e...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...
Random effect in cellular systems is an important topic in systems biology and often simulated with ...
Random effect in cellular systems is an important topic in systems biology and often simu-lated with...
The slow-scale linear noise approximation: an accurate, reduced stochastic description of biochemica...
Biochemical reaction networks often involve reactions that take place on different time scales, givi...
accepted by J. Comput. Biology 07/24/2009Cells of all organisms share the ability to respond to vari...
Biological systems are difficult to understand complex systems. Scientists continue to create models...
We investigate design principles of linear multi-stage phosphorylation cascades by using quantitativ...
International audienceCellular processes such as metabolism, decision making in development and diff...
In this paper, we focus on model reduction of biomolecular systems with multiple time-scales, modele...
The mathematical modeling of the dynamics of cellular processes is a central part of systems biology...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Bistability, or more generally multistability, is an important recurring theme in biological systems...
Abstract: Recent experimental studies elucidating the importance of noise in gene regulation have ig...
A major problem when designing mathematical models of biochemical processes to analyze and explain e...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...
Random effect in cellular systems is an important topic in systems biology and often simulated with ...
Random effect in cellular systems is an important topic in systems biology and often simu-lated with...
The slow-scale linear noise approximation: an accurate, reduced stochastic description of biochemica...
Biochemical reaction networks often involve reactions that take place on different time scales, givi...
accepted by J. Comput. Biology 07/24/2009Cells of all organisms share the ability to respond to vari...
Biological systems are difficult to understand complex systems. Scientists continue to create models...
We investigate design principles of linear multi-stage phosphorylation cascades by using quantitativ...
International audienceCellular processes such as metabolism, decision making in development and diff...
In this paper, we focus on model reduction of biomolecular systems with multiple time-scales, modele...
The mathematical modeling of the dynamics of cellular processes is a central part of systems biology...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Bistability, or more generally multistability, is an important recurring theme in biological systems...
Abstract: Recent experimental studies elucidating the importance of noise in gene regulation have ig...
A major problem when designing mathematical models of biochemical processes to analyze and explain e...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...