A Reaction–Diffusion Model for Salmonella Transmission Within an Industrial Hens House with Distributed Resistance to Salmonella Carrier State
DOI10.1007/978-3-030-77704-3_8zbMath1483.35296OpenAlexW3211135949MaRDI QIDQ5024564
Pascal Zongo, Catherine Beaumont
Publication date: 26 January 2022
Published in: STEAM-H: Science, Technology, Engineering, Agriculture, Mathematics & Health (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/978-3-030-77704-3_8
global attractivitythreshold dynamicsbasic reproduction ratiospatial heterogeneitygenetic heterogeneity
Epidemiology (92D30) Reaction-diffusion equations (35K57) Dynamical systems in biology (37N25) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Genetics and epigenetics (92D10)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- A reaction-diffusion malaria model with incubation period in the vector population
- Threshold dynamics of an infective disease model with a fixed latent period and non-local infections
- Avian influenza dynamics in wild birds with bird mobility and spatial heterogeneous environment
- On the definition and the computation of the basic reproduction ratio \(R_ 0\) in models for infectious diseases in heterogeneous populations
- Structured population models in biology and epidemiology.
- Asymptotic profiles of the steady states for an SIS epidemic reaction-diffusion model
- Semigroups of linear operators and applications to partial differential equations
- Dynamics of a reaction-diffusion waterborne pathogen model with direct and indirect transmission
- A Nonlocal and Time-Delayed Reaction-Diffusion Model of Dengue Transmission
- Propagation of Salmonella within an Industrial Hen House
- Abstract Functional Differential Equations and Reaction-Diffusion Systems
- Basic Reproduction Numbers for Reaction-Diffusion Epidemic Models
- Spectral Bound and Reproduction Number for Infinite-Dimensional Population Structure and Time Heterogeneity
- Global Attractors and Steady States for Uniformly Persistent Dynamical Systems
- Dynamical systems in population biology
- A non-local delayed and diffusive predator-prey model.
This page was built for publication: A Reaction–Diffusion Model for Salmonella Transmission Within an Industrial Hens House with Distributed Resistance to Salmonella Carrier State