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首页> 外文期刊>International journal of mathematics and mathematical sciences >A Mathematical Model for Coinfection of Listeriosis and Anthrax Diseases
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A Mathematical Model for Coinfection of Listeriosis and Anthrax Diseases

机译:李斯特菌病和炭疽病共感染的数学模型

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Listeriosis and Anthrax are fatal zoonotic diseases caused by Listeria monocytogene and Bacillus Anthracis, respectively. In this paper, we proposed and analysed a compartmental Listeriosis-Anthrax coinfection model describing the transmission dynamics of Listeriosis and Anthrax epidemic in human population using the stability theory of differential equations. Our model revealed that the disease-free equilibrium of the Anthrax model only is locally stable when the basic reproduction number is less than one. Sensitivity analysis was carried out on the model parameters in order to determine their impact on the disease dynamics. Numerical simulation of the coinfection model was carried out and the results are displayed graphically and discussed. We simulate the Listeriosis-Anthrax coinfection model by varying the human contact rate to see its effects on infected Anthrax population, infected Listeriosis population, and Listeriosis-Anthrax coinfected population.
机译:李斯特菌病和炭疽是分别由单核细胞增多性李斯特菌和炭疽杆菌引起的致命人畜共患疾病。在本文中,我们提出并分析了一种使用微分方程的稳定性理论描述李斯特菌病和炭疽病在人类人群中传播动力学的区隔李斯特菌-炭疽共感染模型。我们的模型表明,只有当基本繁殖数小于1时,炭疽模型的无病平衡才是局部稳定的。为了确定模型参数对疾病动力学的影响,对模型参数进行了敏感性分析。进行了共感染模型的数值模拟,并对结果进行了图形显示和讨论。我们通过改变人类接触率来模拟李斯特氏菌-炭疽共感染模型,以查看其对感染的炭疽菌种群,李斯特氏菌感染人群和李斯特氏菌-炭疽共感染种群的影响。

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