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On the Properties of the Reaction Counts Chemical Master Equation
by
Sunkara, Vikram
in
Approximation
/ chemical master equation
/ Decomposition reactions
/ jump continuous-time Markov chains
/ Markov chains
/ Population
/ Probability
/ reaction counts
2019
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Do you wish to request the book?
On the Properties of the Reaction Counts Chemical Master Equation
by
Sunkara, Vikram
in
Approximation
/ chemical master equation
/ Decomposition reactions
/ jump continuous-time Markov chains
/ Markov chains
/ Population
/ Probability
/ reaction counts
2019
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On the Properties of the Reaction Counts Chemical Master Equation
Journal Article
On the Properties of the Reaction Counts Chemical Master Equation
2019
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Overview
The reaction counts chemical master equation (CME) is a high-dimensional variant of the classical population counts CME. In the reaction counts CME setting, we count the reactions which have fired over time rather than monitoring the population state over time. Since a reaction either fires or not, the reaction counts CME transitions are only forward stepping. Typically there are more reactions in a system than species, this results in the reaction counts CME being higher in dimension, but simpler in dynamics. In this work, we revisit the reaction counts CME framework and its key theoretical results. Then we will extend the theory by exploiting the reactions counts’ forward stepping feature, by decomposing the state space into independent continuous-time Markov chains (CTMC). We extend the reaction counts CME theory to derive analytical forms and estimates for the CTMC decomposition of the CME. This new theory gives new insights into solving hitting times-, rare events-, and a priori domain construction problems.
Publisher
MDPI AG,MDPI
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