Analysis of pine wilt disease model with nonlinear incidence and horizontal transmission
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Publication:2336218
DOI10.1155/2014/204241zbMath1437.92136OpenAlexW2139587988WikidataQ59050266 ScholiaQ59050266MaRDI QIDQ2336218
Publication date: 19 November 2019
Published in: Journal of Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2014/204241
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Cites Work
- Global dynamics of a pine wilt disease transmission model with nonlinear incidence rates
- Stability analysis and optimal control of pine wilt disease with horizontal transmission in vector population
- Global analysis of a vector-host epidemic model with nonlinear incidences
- Dynamical behavior of epidemiological models with nonlinear incidence rates
- A generalization of the Kermack-McKendrick deterministic epidemic model
- Dynamical behavior of an epidemic model with a nonlinear incidence rate
- Stability analysis and optimal control of a vector-borne disease with nonlinear incidence
- Analysis of the mathematical model for the spread of pine wilt disease
- Global analysis of an epidemic model with nonmonotone incidence rate
- Epidemic models with nonlinear infection forces
- Uniformly Persistent Systems
- A Geometric Approach to Global-Stability Problems
- Dynamical systems in population biology
- Unnamed Item