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Two profitless delays for an SEIRS epidemic disease model with vertical transmission and pulse vaccination

机译:具有垂直传输和脉冲疫苗的SEIR流行病模型的两个无利率延迟

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Since the investigation of impulsive delay differential equations is beginning, the literature on delay epidemic models with pulse vaccination is not extensive. In this paper, we propose a new SEIRS epidemic disease model with two profitless delays and vertical transmission, and analyze the dynamics behaviors of the model under pulse vaccination. Using the discrete dynamical system determined by the stroboscopic map, we obtain a ‘infection-free’ periodic solution, further, show that the ‘infection-free’ periodic solution is globally attractive when some parameters of the model are under appropriate conditions. Using a new modeling method, we obtain sufficient condition for the permanence of the epidemic model with pulse vaccination. We show that time delays, pulse vaccination and vertical transmission can bring different effects on the dynamics behaviors of the model by numerical analysis. Our results also show the delays are ‘‘profitless’’. In this paper, the main feature is to introduce two discrete time delays, vertical transmission and impulse into SEIRS epidemic model and to give pulse vaccination strategies.
机译:由于脉冲延迟微分方程的调查开始,因此脉冲疫苗接种延迟流行模型的文献是不广泛的。在本文中,我们提出了一种新的SEIRS流行病模型,具有两个无利率的延迟和垂直传输,并分析了脉冲疫苗下模型的动力学行为。使用由触控式图确定的离散动态系统,我们进一步获得“无感染”的周期性溶液,表明当模型的某些参数在适当的条件下,“无感染”周期性解决方案是全球吸引力。使用新的建模方法,我们获得了足够的条件,以脉冲疫苗接种的持久性持久性。我们表明时间延迟,脉冲疫苗接种和垂直传输可以通过数值分析对模型的动态行为带来不同的影响。我们的结果还显示延误是“盈利”的。在本文中,主要特征是将两个离散的时间延迟,垂直传输和脉冲引入SEIRS流行模式,并提供脉冲疫苗接种策略。

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