Abstract Background Many biological systems exhibit sustained stochastic oscillations in their steady state. Assessing these oscillations is usually a challenging task due to the potential variability of the amplitude and frequency of the oscillations over time. As a result of this variability, when several stochastic replications are averaged, the oscillations are flattened and can be overlooked. This can easily lead to the erroneous conclusion that the system reaches a constant steady state. Results This paper proposes a straightforward method to detect and asses stochastic oscillations. The basis of the method is in the use of pol...
<p>(A) Histogram of explained variance (EV) of each trajectory. (B) Explained variance of each traje...
This research was funded by the BBSRC Grant BB/K003097/1 (Systems Biology Analysis of Biological Tim...
Many complex systems, ranging from migrating cells to animal groups, exhibit stochastic dynamics des...
Background: Many biological systems exhibit sustained stochastic oscillations in their steady state....
Background: Many biological systems exhibit sustained stochastic oscillations in their steady state....
A straightforward method to compute averagestochasticoscillations fromdata samples Jorge Júlvez1,2 B...
Although the populations of biological systems are inherently discrete and their dynamics are strong...
Several approaches exist to model the evolution of dynamical systems with large populations. These a...
Several approaches exist to model the evolution of dynamical systems with large populations. These a...
In order to analyse large complex stochastic dynamical models such as those studied in systems biolo...
In order to analyse large complex stochastic dynamical models such as those studied in systems biolo...
Multiple biological processes are driven by oscillatory gene expression at different time scales. Pu...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
<p>(A) Histogram of explained variance (EV) of each trajectory. (B) Explained variance of each traje...
This research was funded by the BBSRC Grant BB/K003097/1 (Systems Biology Analysis of Biological Tim...
Many complex systems, ranging from migrating cells to animal groups, exhibit stochastic dynamics des...
Background: Many biological systems exhibit sustained stochastic oscillations in their steady state....
Background: Many biological systems exhibit sustained stochastic oscillations in their steady state....
A straightforward method to compute averagestochasticoscillations fromdata samples Jorge Júlvez1,2 B...
Although the populations of biological systems are inherently discrete and their dynamics are strong...
Several approaches exist to model the evolution of dynamical systems with large populations. These a...
Several approaches exist to model the evolution of dynamical systems with large populations. These a...
In order to analyse large complex stochastic dynamical models such as those studied in systems biolo...
In order to analyse large complex stochastic dynamical models such as those studied in systems biolo...
Multiple biological processes are driven by oscillatory gene expression at different time scales. Pu...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
Automated verification of stochastic models has been proved to be an effective technique for the ana...
<p>(A) Histogram of explained variance (EV) of each trajectory. (B) Explained variance of each traje...
This research was funded by the BBSRC Grant BB/K003097/1 (Systems Biology Analysis of Biological Tim...
Many complex systems, ranging from migrating cells to animal groups, exhibit stochastic dynamics des...