Ticks and tick-borne diseases in Africa: a disease transmission model.

H. Mwambi
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引用次数: 14

Abstract

A general disease transmission model is developed for a tick-borne disease for cattle. Both the tick and cow are possible hosts for the disease parasite. The two species are therefore classified as infected or uninfected. The tick individual is further classified as sedentary (off-host) or feeding (on-host). First conditions for the persistence of the tick population are investigated. A threshold quantity for the disease is derived which is dependent on both the tick and host population parameters and the two transmission rates: from ticks to cattle and vice versa. From the analysis persistence and non-persistence conditions for both the tick population and the disease are investigated. The effect of the presence of a second host species is introduced as an additional feature in the analysis.
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非洲的蜱和蜱传疾病:疾病传播模型。
建立了牛蜱传疾病的一般疾病传播模型。蜱虫和牛都可能是这种疾病寄生虫的宿主。因此,这两个物种被分为受感染或未受感染。蜱虫个体进一步被分类为久坐(离宿主)或摄食(在宿主)。研究了蜱虫种群持续存在的首要条件。该疾病的阈值数量取决于蜱虫和宿主种群参数以及两种传播率:从蜱虫到牛,反之亦然。通过分析,探讨了蜱虫种群和疾病的持久性和非持久性条件。第二宿主物种存在的影响作为分析中的一个附加特征被引入。
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Dynamic resource allocation for epidemic control in multiple populations. Is microsatellite mutational asymmetry detectable in allele frequency distributions? Ticks and tick-borne diseases in Africa: a disease transmission model. Periodic breathing at high altitude. Dynamic resource allocation for epidemic control in multiple populations.
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