A West Nile virus nonlocal model with free boundaries and seasonal succession
Author:
Funder
Major Research Plan
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Agricultural and Biological Sciences (miscellaneous),Modeling and Simulation
Link
https://link.springer.com/content/pdf/10.1007/s00285-022-01860-x.pdf
Reference36 articles.
1. Bates P (2006) On some nonlocal evolution equations arising in materials science. Am Math Soc 48:13–52
2. Bao X, Shen W (2017) Criteria for the existence of principal eigenvalues of time periodic cooperative linear systems with nonlocal dispersal. Proc Am Math Soc 145:2881–2894
3. Beck C, Jimenezclavero M, Leblond A et al (2013) Flaviviruses in Europe: complex circulation patterns and their consequences for the diagnosis and control of West Nile disease. Int J Environ Res Public Health 10:6049–6083
4. Bodnar M, Velazquez J (2006) An integro-differential equation arising as a limit of individual cell-based models. J Differ Equ 222:341–380
5. Bowman C, Gumel A, Driessche P et al (2005) A mathematical model for assessing control strategies against West Nile virus. Bull Math Biol 67:1107–1133
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