Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear dynamics, presenting a challenge for both experiment and theory. Time-scale separation has been one of the few theoretical methods for distilling general principles from such complexity. It has provided essential insights in areas such as enzyme kinetics, allosteric enzymes, G-protein coupled receptors, ion channels, gene regulation and post-translational modification. In each case, internal molecular complexity has been eliminated, leading to rational algebraic expressions among the remaining components. This has yielded familiar formulas such as those of Michaelis-Menten in enzyme kinetics, Monod-Wyman-Changeux in allostery and Ackers-Johnso...
Modeling and simulation of biochemical reactions is of great interest in the context of system biolo...
AbstractThe constraint-based analysis has emerged as a useful tool for analysis of biochemical netwo...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Abstract Cellular physiology is implemented by formidably complex biochemical systems with highly no...
Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear d...
Background: Cellular processes such as metabolism, decision making in development and differentiati...
Many biochemical reaction networks are inherently multiscale in time and in the counts of participat...
We develop the stochastic, chemical master equation as a unifying approach to the dynamics of bioche...
Biochemical networks are used in computational biology, to model the static and dynamical details of...
Living cells must communicate with the external environment, exchanging information in terms of mole...
Post-transductional modifications tune the functions of proteins and regulate the collective dynamic...
The study of dynamic functions of large-scale biological networks has intensified in recent years. A...
The constraint-based analysis has emerged as a useful tool for analysis of biochemical networks. Thi...
Modeling and simulation of biochemical reactions is of great interest in the context of system biolo...
AbstractThe constraint-based analysis has emerged as a useful tool for analysis of biochemical netwo...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Abstract Cellular physiology is implemented by formidably complex biochemical systems with highly no...
Cellular physiology is implemented by formidably complex biochemical systems with highly nonlinear d...
Background: Cellular processes such as metabolism, decision making in development and differentiati...
Many biochemical reaction networks are inherently multiscale in time and in the counts of participat...
We develop the stochastic, chemical master equation as a unifying approach to the dynamics of bioche...
Biochemical networks are used in computational biology, to model the static and dynamical details of...
Living cells must communicate with the external environment, exchanging information in terms of mole...
Post-transductional modifications tune the functions of proteins and regulate the collective dynamic...
The study of dynamic functions of large-scale biological networks has intensified in recent years. A...
The constraint-based analysis has emerged as a useful tool for analysis of biochemical networks. Thi...
Modeling and simulation of biochemical reactions is of great interest in the context of system biolo...
AbstractThe constraint-based analysis has emerged as a useful tool for analysis of biochemical netwo...
International audienceWe consider a generic biological process described by a dynamical system, subj...