AbstractMany physiological characteristics of living cells are regulated by protein interaction networks. Because the total numbers of these protein species can be small, molecular noise can have significant effects on the dynamical properties of a regulatory network. Computing these stochastic effects is made difficult by the large timescale separations typical of protein interactions (e.g., complex formation may occur in fractions of a second, whereas catalytic conversions may take minutes). Exact stochastic simulation may be very inefficient under these circumstances, and methods for speeding up the simulation without sacrificing accuracy have been widely studied. We show that the “total quasi-steady-state approximation” for enzyme-catal...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
The stochastic simulation algorithm has been used to generate exact trajectories of biochemical reac...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
none4siMany biochemical networks have complex multidimensional dynamics and there is a long history ...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Journal ArticleGiven the substantial computational requirements of stochastic simulation, approximat...
AbstractThe biochemical reaction networks include elementary reactions differing by many orders of m...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparate timesc...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
The stochastic simulation algorithm has been used to generate exact trajectories of biochemical reac...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
none4siMany biochemical networks have complex multidimensional dynamics and there is a long history ...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Along with the growth of technologies allowing accurate visualization of biochemical reactions to th...
Journal ArticleGiven the substantial computational requirements of stochastic simulation, approximat...
AbstractThe biochemical reaction networks include elementary reactions differing by many orders of m...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparate timesc...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
The stochastic simulation algorithm has been used to generate exact trajectories of biochemical reac...
<div><p>Biochemical reaction networks (BRNs) in a cell frequently consist of reactions with disparat...