Regular and chaotic variability caused by random disturbances in a predator-prey system with disease in predator
From MaRDI portal
Publication:2111281
DOI10.1016/j.chaos.2022.112551OpenAlexW4292697388WikidataQ114198999 ScholiaQ114198999MaRDI QIDQ2111281
L. B. Ryashko, Tatyana Perevalova, Irina Bashkirtseva
Publication date: 13 January 2023
Published in: Chaos, Solitons and Fractals (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.chaos.2022.112551
Epidemiology (92D30) Dynamical systems in biology (37N25) Population dynamics (general) (92D25) Ordinary differential equations and systems with randomness (34F05) Ecology (92D40)
Cites Work
- Unnamed Item
- Disease-induced chaotic oscillations and its possible control in a predator-prey system with disease in predator
- A mathematical study of a predator-prey dynamics with disease in predator
- Noise-induced transitions. Theory and applications in physics, chemistry, and biology
- Discrete epidemic models
- Confidence tori in the analysis of stochastic 3D-cycles
- Predator-prey oscillations can shift when diseases become endemic
- Noise-induced shifts in dynamics of multi-rhythmic population SIP-model
- Analysis of regular and chaotic dynamics in a stochastic eco-epidemiological model
- Dynamical behaviour of an epidemic model with disease in top-predator population only: a bifurcation study
- Nonlinear climate dynamics: from deterministic behaviour to stochastic excitability and chaos
- Uniform persistence in a prey-predator model with a diseased predator
- Spread of a disease and its effect on population dynamics in an eco-epidemiological system
- Role of environmental disturbance in an eco-epidemiological model with disease from external source
- Analysis of noise-induced transitions from regular to chaotic oscillations in the Chen system
- Stochastic Resonance
- ANALYSIS OF STOCHASTIC CYCLES IN THE CHEN SYSTEM
- Stabilization in a 3D eco‐epidemiological model: From the complete extinction of a predator population to their self‐healing
- Mathematical Models in Epidemiology
- ROLE OF HARVESTING IN CONTROLLING CHAOTIC DYNAMICS IN THE PREDATOR–PREY MODEL WITH DISEASE IN THE PREDATOR
- How additive noise forms and shifts phantom attractors in slow–fast systems
- Nonlinear dynamics of chaotic and stochastic systems. Tutorial and modern developments