首页> 外文期刊>Journal of Mathematical Biology >The role of non-viraemic transmission on the persistence and dynamics of a tick borne virus - Louping ill in red grouse (Lagopus lagopus scoticus) and mountain hares (Lepus timidus)
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The role of non-viraemic transmission on the persistence and dynamics of a tick borne virus - Louping ill in red grouse (Lagopus lagopus scoticus) and mountain hares (Lepus timidus)

机译:非病毒传播对壁虱传播的病毒-红松鸡(Lagopus lagopus scoticus)和野兔(Lepus timidus)的娄平病的持久性和动力学的作用

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There exist many tick borne infections that are of either economic or public health interest. Mathematical models have previously been used to describe the dynamics of these infections. However it has recently come to light that there is an alternative mechanism for the transmission of these diseases that has not been considered in a modelling framework. This is transmission through ticks co-feeding on non-viraemic hosts. This paper extends a simple mathematical model to include this alternative transmission mechanism. The model is used to describe the dynamics of Louping ill virus in red grouse (the viraemic host) and hares (the non-viraemic host). However, these results are applicable to many other systems. The model is analysed using joint threshold density curves. It is found that the presence of a non-viraemic host allows the virus to persist more readily than it would in the presence of a host that simply amplified the tick population. More importantly, if the level of non-viraemic transmission is high enough the virus can persist in the absence of the viraemic host. This result has important implications for the control of tick borne diseases. [References: 19]
机译:存在许多与经济或公共卫生有关的由tick传播的感染。先前已使用数学模型来描述这些感染的动态。但是,最近发现,有一种替代机制可用于这些疾病的传播,而该机制尚未在建模框架中加以考虑。这是通过在非病毒宿主上共同喂养的co传播。本文扩展了一个简单的数学模型,以包括这种替代的传输机制。该模型用于描述红色松鸡(病毒宿主)和野兔(非病毒宿主)中娄平病菌的动态。但是,这些结果适用于许多其他系统。使用联合阈值密度曲线分析模型。发现非病毒宿主的存在使病毒比简单扩增the虫种群的宿主更容易持久。更重要的是,如果非病毒传播水平足够高,则病毒可以在没有病毒宿主的情况下持续存在。这一结果对控制壁虱传播疾病具有重要意义。 [参考:19]

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