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Modelling and simulating reaction-diffusion systems using coloured Petri nets

  • Fei Liu*
  • , Mary Ann Blätke
  • , Monika Heiner
  • , Ming Yang
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • Otto von Guericke University Magdeburg
  • Brandenburg University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Reaction-diffusion systems often play an important role in systems biology when developmental processes are involved. Traditional methods of modelling and simulating such systems require substantial prior knowledge of mathematics and/or simulation algorithms. Such skills may impose a challenge for biologists, when they are not equally well-trained in mathematics and computer science. Coloured Petri nets as a high-level and graphical language offer an attractive alternative, which is easily approachable. In this paper, we investigate a coloured Petri net framework integrating deterministic, stochastic and hybrid modelling formalisms and corresponding simulation algorithms for the modelling and simulation of reaction-diffusion processes that may be closely coupled with signalling pathways, metabolic reactions and/or gene expression. Such systems often manifest multiscaleness in time, space and/or concentration. We introduce our approach by means of some basic diffusion scenarios, and test it against an established case study, the Brusselator model.

Original languageEnglish
Pages (from-to)297-308
Number of pages12
JournalComputers in Biology and Medicine
Volume53
DOIs
StatePublished - 1 Oct 2014

Keywords

  • Brusselator
  • Coloured stochastic/continous/hybrid Petri nets
  • Multiscaleness
  • Petri net framework
  • Reaction-diffusion systems

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