Vector–host epidemic model with direct transmission in random environment
Author:
Affiliation:
1. Mathematics, Division of Science, Southern Wesleyan University, 907 Wesleyan Drive, Central, South Carolina 29630, USA
2. Department of Mathematics, Georgia Southern University, 11935 Abercorn Street, Savannah, Georgia 31419, USA
Publisher
AIP Publishing
Subject
Applied Mathematics,General Physics and Astronomy,Mathematical Physics,Statistical and Nonlinear Physics
Link
https://aip.scitation.org/doi/pdf/10.1063/5.0059031
Reference44 articles.
1. L. J. Allen, in Mathematical Epidemiology (Springer, 2008), pp. 81–130.
2. L. J. Allen, Stochastic Population and Epidemic Models: Persistence and Extinction, Mathematical Biosciences Institute Lecture Series: Stochastics in Biological Systems Vol. 1 (Springer, Cham; Mathematical Biosciences Institute, Ohio State University, Columbus, 2015).
3. Comparison of deterministic and stochastic SIS and SIR models in discrete time
4. Harvesting Natural Populations in a Randomly Fluctuating Environment
5. Stochastic models for competing species with a shared pathogen
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