Increase maximum economic yield in a patchy environment
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Publication:6664052
DOI10.1007/s00285-024-02178-6MaRDI QIDQ6664052
Pierre Auger, Bilel Elbetch, Ali Moussaoui
Publication date: 16 January 2025
Published in: Journal of Mathematical Biology (Search for Journal in Brave)
logistic equationresource managementdispersalslow-fast systemsTikhonov's theoremSchaefer modelmaximum economic yield
Dynamical systems in biology (37N25) Population dynamics (general) (92D25) Singular perturbations of ordinary differential equations (34D15) Global stability of solutions to ordinary differential equations (34D23)
Cites Work
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- Persistence and extinction in single-species reaction-diffusion models
- Persistence and extinction in Lotka-Volterra reaction-diffusion equations
- Population dynamics in two-patch environments: Some anomalous consequences of an optimal habitat distribution
- Persistence, extinction, and critical patch number for island populations
- Cooperative systems theory and global stability of diffusion models
- Mathematical biology. Vol. 1: An introduction.
- The effects of human movement on the persistence of vector-borne diseases
- The multi-patch logistic equation
- Number of source patches required for population persistence in a source-sink metapopulation with explicit movement
- Mathematical Models of Population Interactions with Dispersal. I: Stability of Two Habitats with and without a Predator
- The multi-patch logistic equation with asymmetric migration
- Fast diffusion inhibits disease outbreaks
- Effects of rapid population growth on total biomass in multi-patch environment
- Nonlinear diffusion in multi-patch logistic model
- Generalized logistic equation on networks
- Effect of dispersal in single-species discrete diffusion systems with source-sink patches
- On the effect of density-dependent dispersal on the global dynamics of population
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