Abstract
We present the spatial regime conversion method (SRCM), a novel hybrid modelling framework for simulating reaction–diffusion systems that adaptively combines stochastic discrete and deterministic continuum representations. Extending the regime conversion method (RCM) to spatial settings, the SRCM employs a discrete reaction–diffusion master equation (RDME) representation in regions of low concentration and continuum partial differential equations (PDEs) where concentrations are high, dynamically switching based on local thresholds. This is an advancement over the existing methods in the literature, requiring no fixed spatial interfaces, enabling efficient and accurate simulation of systems in which stochasticity plays a key role but is not required uniformly across the domain. We specify the full mathematical formulation of the SRCM, including conversion reactions, hybrid kinetic rules, and consistent numerical updates. The method is validated across several one-dimensional test systems, including simple diffusion from a region of high concentration, the formation of a morphogen gradient, and the propagation of FKPP travelling waves. The results show that the SRCM captures key stochastic features while offering substantial gains in computational efficiency over fully stochastic models.
| Original language | English |
|---|---|
| Article number | 3406 |
| Number of pages | 37 |
| Journal | Mathematics |
| Volume | 13 |
| Issue number | 21 |
| Early online date | 26 Oct 2025 |
| DOIs | |
| Publication status | Published - 30 Nov 2025 |
Data Availability Statement
The data and code employed in this study are accessible at https://doi.org/10.5281/zenodo.17306542.Acknowledgements
The authors would like to acknowledge the initial helpful discussions with Martin Robinson, University of Oxford.Funding
C.G.C. is funded by the EPSRC Centre for Doctoral Training in Statistical Applied Mathematics at Bath (SAMBa) under the project EP/S022945/1
| Funders | Funder number |
|---|---|
| Centre for Doctoral Training in Statistical Applied Mathematics, University of Bath | EP/S022945/1 |
Keywords
- PDE modelling
- hybrid modelling
- multiscale modelling
- reaction-diffusion systems
- spatially extended hybrid simulation
- stochastic simulation
- travelling wave
ASJC Scopus subject areas
- Computer Science (miscellaneous)
- General Mathematics
- Engineering (miscellaneous)
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