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复杂性和季节性对媒介-宿主模型中后向分岔的影响。

Effects of complexity and seasonality on backward bifurcation in vector-host models.

作者信息

Bilal Shakir, Michael Edwin

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

R Soc Open Sci. 2018 Feb 28;5(2):171971. doi: 10.1098/rsos.171971. eCollection 2018 Feb.

Abstract

We study implications of complexity and seasonality in vector-host epidemiological models exhibiting backward bifurcation. Vector-host diseases represent complex infection systems that can vary in the transmission processes and population stages involved in disease progression. Seasonal fluctuations in external forcing factors can also interact in a complex way with internal host factors to govern the transmission dynamics. In backward bifurcation, the insufficiency of  < 1 for predicting the stability of the disease-free equilibrium (DFE) state arises due to existence of bistability (coexisting DFE and endemic equilibria) for a range of values below one. Here we report that this region of bistability decreases with increasing complexity of vector-borne disease transmission as well as with increasing seasonality strength. The decreases in the bistability region are accompanied by a reduced force of infection acting on primary hosts. As a consequence, we show counterintuitively that a more complex vector-borne disease may be easier to control in settings of high seasonality.

摘要

我们研究了具有向后分岔的媒介-宿主流行病学模型中复杂性和季节性的影响。媒介-宿主疾病代表复杂的感染系统,其在疾病传播过程和疾病进展所涉及的种群阶段可能会有所不同。外部强迫因素的季节性波动也可能以复杂的方式与内部宿主因素相互作用,从而控制传播动态。在向后分岔中,由于在一系列小于1的值存在双稳态(无病平衡(DFE)和地方病平衡共存),导致预测无病平衡(DFE)状态稳定性的R0 < 1并不充分。在此我们报告,随着媒介传播疾病传播复杂性的增加以及季节性强度的增加,这个双稳态区域会减小。双稳态区域的减小伴随着作用于主要宿主的感染力的降低。因此,我们反直觉地表明,在高季节性环境中,更复杂的媒介传播疾病可能更容易控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c3c/5830785/cdb912c4c85c/rsos171971-g1.jpg

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