Along with the growth of technologies allowing accurate visualization of biochemical reactions to the scale of individual molecules has arisen an appreciation of the role of statistical fluctuations in intracellular biochemistry. The stochastic nature of metabolism can no longer be ignored. It can be probed empirically, and theoretical studies have established its importance. Traditional methods for modeling stochastic biochemistry are derived from an elegant and physically satisfying theory developed by Gillespie. However, although Gillespie’s algorithm and its derivatives efficiently model small-scale systems, complex networks are harder to manage on easily available computer systems. Here we present a novel method of simulating stochasti...
In the past years it has become evident that stochastic effects in regulatory networks play an impor...
Traditionally, the law of mass action has been used to deterministically model chemical reactions. T...
Traditional deterministic approaches for simulation of chemically reacting systems fail to capture t...
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...
AbstractThe biochemical reaction networks include elementary reactions differing by many orders of m...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Simulation of biomolecular networks is now indispensable for studying biological systems, from small...
Throughout our current generation, scientific studies, with the help of increased technological meth...
accepted by J. Comput. Biology 07/24/2009Cells of all organisms share the ability to respond to vari...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
With the advances in measurement technology for molecular biology, predictive mathematical models of...
Abstract Background Intrinsic fluctuations due to the...
Abstract — Stochastic models of biological networks are well established in systems biology, where t...
In the past years it has become evident that stochastic effects in regulatory networks play an impor...
Traditionally, the law of mass action has been used to deterministically model chemical reactions. T...
Traditional deterministic approaches for simulation of chemically reacting systems fail to capture t...
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...
AbstractThe biochemical reaction networks include elementary reactions differing by many orders of m...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
Stochasticity is a key characteristic of intracellular processes such as gene regulation and chemica...
Simulation of biomolecular networks is now indispensable for studying biological systems, from small...
Throughout our current generation, scientific studies, with the help of increased technological meth...
accepted by J. Comput. Biology 07/24/2009Cells of all organisms share the ability to respond to vari...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
With the advances in measurement technology for molecular biology, predictive mathematical models of...
Abstract Background Intrinsic fluctuations due to the...
Abstract — Stochastic models of biological networks are well established in systems biology, where t...
In the past years it has become evident that stochastic effects in regulatory networks play an impor...
Traditionally, the law of mass action has been used to deterministically model chemical reactions. T...
Traditional deterministic approaches for simulation of chemically reacting systems fail to capture t...