Emergence of Turing patterns and dynamic visualization in excitable neuron model
From MaRDI portal
Publication:2113729
DOI10.1016/j.amc.2022.127010OpenAlexW4212988362MaRDI QIDQ2113729
Arnab Mondal, Argha Mondal, Sanjeev Kumar Sharma, Ranjit Kumar Upadhyay
Publication date: 14 March 2022
Published in: Applied Mathematics and Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.amc.2022.127010
Parabolic equations and parabolic systems (35Kxx) Qualitative theory for ordinary differential equations (34Cxx) Physiological, cellular and medical topics (92Cxx)
Related Items (1)
Uses Software
Cites Work
- Codimension-two bifurcation analysis in two-dimensional Hindmarsh-Rose model
- Synchronization and control of coupled reaction-diffusion systems of the FitzHugh-Nagumo type
- Instabilities and spatio-temporal chaos in hexagon patterns with rotation
- Pattern formation by super-diffusion in Fitzhugh-Nagumo model
- Amplitude equations for reaction-diffusion systems with a Hopf bifurcation and slow real modes
- Birth and death of spiral waves in a network of Hindmarsh-rose neurons with exponential magnetic flux and excitable media
- Spatiotemporal instabilities and pattern formation in systems of diffusively coupled Izhikevich neurons
- Turing instability induced by random network in FitzHugh-Nagumo model
- Dynamical transition theory of hexagonal pattern formations
- A novel approach to the study of spatio-temporal brain dynamics using change-based complexity
- Three-dimensional simulation of biological ion channels under mechanical, thermal and fluid forces
- Turing instability and pattern formation of neural networks with reaction-diffusion terms
- Pattern formation for a two-dimensional reaction-diffusion model with chemotaxis
- Dynamics and stochastic resonance in a thermosensitive neuron
- APPLICATION OF A TWO-DIMENSIONAL HINDMARSH–ROSE TYPE MODEL FOR BIFURCATION ANALYSIS
- Reaction-Diffusion Model as a Framework for Understanding Biological Pattern Formation
- Spatial dynamics in a predator-prey model with herd behavior
- BIFURCATIONS IN TWO-DIMENSIONAL HINDMARSH–ROSE TYPE MODEL
- New features of the software M<scp>at</scp>C<scp>ont</scp>for bifurcation analysis of dynamical systems
- Large time behaviour and synchronization of complex networks of reaction–diffusion systems of FitzHugh–Nagumo type
This page was built for publication: Emergence of Turing patterns and dynamic visualization in excitable neuron model