论文标题

静止在随机流行病学模型中产生移动平均值,一个宿主和两个寄生虫

Quiescence generates moving average in a stochastic epidemiological model with one host and two parasites

论文作者

Sanusi, Usman, John, Sona, Mueller, Johannes, Tellier, Aurélien

论文摘要

流行病学和协同进化动态的数学模型广泛用于改善传染病的疾病管理策略。许多疾病呈现出某种形式的宿主内静脉阶段,也称为秘密感染,而其他疾病则在环境中表现出休眠阶段。由于静止/休眠阶段可以抵抗药物,抗生素,杀菌剂治疗,因此研究这两个生活创造特征对协同进化动力学的影响是实际相关的。我们首先开发了一种确定性的协同进化模型,其中两种寄生虫类型感染了一种宿主类型,并在分析中研究了动力学系统的稳定性。我们专门针对具有静止的五乘五五个方程系统得出稳定条件。其次,我们开发了模型的随机版本,以研究静止对系统动力学随机性的影响。我们计算遵循多元正态分布的寄生虫类型的稳态分布。此外,我们在寄生虫类型之间的对称和不对称静止率下获得了系统的协方差矩阵的数值解。当寄生虫菌株相同时,静止会增加以高传输速率感染个体数量的方差,反之亦然。但是,当降低率不同的寄生虫菌株之间存在竞争时,静止会产生移动的平均行为,从而减弱随机性并减少受感染宿主数量的差异。进入静止率最高的应变决定了移动平均值的强度和随机性的降低。因此,值得研究在静止/休眠状态下的多晶石寄生虫的简单模型,以改善疾病管理策略。

Mathematical modelling of epidemiological and coevolutionary dynamics is widely being used to improve disease management strategies of infectious diseases. Many diseases present some form of intra-host quiescent stage, also known as covert infection, while others exhibit dormant stages in the environment. As quiescent/dormant stages can be resistant to drug, antibiotics, fungicide treatments, it is of practical relevance to study the influence of these two life-history traits on the coevolutionary dynamics. We develop first a deterministic coevolutionary model with two parasite types infecting one host type and study analytically the stability of the dynamical system. We specifically derive a stability condition for a five-by-five system of equations with quiescence. Second, we develop a stochastic version of the model to study the influence of quiescence on stochasticity of the system dynamics. We compute the steady state distribution of the parasite types which follows a multivariate normal distribution. Furthermore, we obtain numerical solutions for the covariance matrix of the system under symmetric and asymmetric quiescence rates between parasite types. When parasite strains are identical, quiescence increases the variance of the number of infected individuals at high transmission rate and vice versa when the transmission rate is low. However, when there is competition between parasite strains with different quiescent rates, quiescence generates a moving average behaviour which dampen off stochasticity and decreases the variance of the number of infected hosts. The strain with the highest rate of entering quiescence determines the strength of the moving average and the magnitude of reduction of stochasticity. Thus, it is worth investigating simple models of multi-strain parasite under quiescence/dormancy to improve disease management strategies.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源