| [1] | Carlson C J, Getz W M, Kausrud K L, et al. Spores and soil from six sides: Interdisciplinarity and the environmental biology of anthrax (Bacillus anthracis). Biological Reviews, 2018, 93(4): 1813-1831 | | [2] | Turnbull P C. Guidelines for the Surveillance and Control of Anthrax in Humans and Animals, Third Edition. United States of America: World Health Organization, 1998 | | [3] | Fasanella A, Galante D, Garofolo G, et al. Anthrax undervalued zoonosis. Veterinary Microbiology, 2010, 140(3/4): 318-331 | | [4] | Furniss P R, Hahn B D. A mathematical model of an anthrax epizo?tic in the Kruger National Park. Applied Mathematical Modelling, 1981, 5(3): 130-136 | | [5] | Friedman A, Yakubu A A. Anthrax epizootic and migration: Persistence or extinction. Mathematical Biosciences, 2013, 241(1): 137-144 | | [6] | Saad-Roy C M, Van den Driessche P, Yakubu A A. A mathematical model of anthrax transmission in animal populations. Bulletin of Mathematical Biology, 2017, 79(2): 303-324 | | [7] | Lutz L, Williams K A, Villet M H, et al. Species identification of adult African blowflies (diptera: Calliphoridae) of forensic importance. International Journal of Legal Medicine, 2018, 132(3): 831-842 | | [8] | Ganeva D. Analysis of the Bulgarian tabanid fauna with regard to its potential for epidemiological involvement. Bulgarian Journal of Veterinary Medicine, 2004, 7(1): 1-8 | | [9] | Blackburn J K, Van Ert M, Mullins J C, et al. The necrophagous fly anthrax transmission pathway: Empirical and genetic evidence from wildlife epizootics. Vector-Borne and Zoonotic Diseases, 2014, 14(8): 576-583 | | [10] | Navdarashvili A, Doker T J, Geleishvili M, et al. Human anthrax outbreak associated with livestock exposure: Georgia, 2012. Epidemiology & Infection, 2016, 144(1): 76-87 | | [11] | Collier R J, Young J A T. Anthrax toxin. Annual Review of Cell and Developmental Biology, 2003, 19(1): 45-70 | | [12] | Baldacchino F, Muenworn V, Desquesnes M, et al. Transmission of pathogens by Stomoxys flies (Diptera, Muscidae): A review. Parasite, 2013, 20, 26 | | [13] | Blackburn J K, Curtis A, Hadfield T L, et al. Confirmation of Bacillus anthracis from flesh-eating flies collected during a West Texas anthrax season. Journal of Wildlife Diseases, 2010, 46(3): 918-922 | | [14] | Mushayabasa S, Marijani T, Masocha M. Dynamical analysis and control strategies in modeling anthrax. Computational and Applied Mathematics, 2017, 36(3): 1333-1348 | | [15] | Smith H L. Monotone Dynamical Systems: An Introduction to the Theory of Competitive and Cooperative Systems. Mathematical Surveys and Monographs, vol 41. Providence: American Mathematical Society, 1995 | | [16] | Zhao X Q, Jing Z J. Global asymptotic behavior in some cooperative systems of functional differential equations. Canadian Applied Mathematics Quarterly, 1996, 4(4): 421-444 | | [17] | Lou Y, Zhao X Q. Modelling malaria control by introduction of larvivorous fish. Bulletin of Mathematical Biology, 2011, 73(10): 2384-2407 | | [18] | Diekmann O, Heesterbeek J A P, Roberts M G. The construction of next-generation matrices for compartmental epidemic models. Journal of the Royal Society Interface, 2010, 7(47): 873-885 | | [19] | Van den Driessche P, Watmough J. Reproduction numbers and sub-threshold endemic equilibria for compartmental models of disease transmission. Mathematical Biosciences, 2002, 180(1/2): 29-48 | | [20] | Ruan S, Wei J. On the zeros of a third degree exponential polynomial with applications to a delayed model for the control of testosterone secretion. Mathematical Medicine and Biology, 2001, 18(1): 41-52 | | [21] | Li X, Wei J. On the zeros of a fourth degree exponential polynomial with applications to a neural network model with delays. Chaos, Solitons & Fractals, 2005, 26(2): 519-526 | | [22] | Berman A, Plemmons R J. Nonnegative Matrices in the Mathematical Sciences. New York: Academic Press, 1976 | | [23] | LaSalle J P. The Stability of Dynamical Systems. Philadephia: Society for Industrial and Applied Mathematics, 1976 | | [24] | Hirsch M W, Smith H L, Zhao X Q. Chain transitivity, attractivity, and strong repellors for semidynamical systems. Journal of Dynamics and Differential Equations, 2001, 13(1): 107-131 | | [25] | Hsieh Y H, Liu J, Tzeng Y H, et al. Impact of visitors and hospital staff on nosocomial transmission and spread to community. Journal of Theoretical Biology, 2014, 356: 20-29 | | [26] | Liu X, Takeuchi Y. Spread of disease with transport-related infection and entry screening. Journal of Theoretical Biology, 2006, 242: 517-528 |
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