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The interaction of dispersal and control methods for the riverine tsetse fly Glossina palpalis gambiensis (Diptera: Glossinidae): a modelling study

机译:江边采采蝇苍蝇(Glossina palpalis gambiensis)(双翅目:Glossinidae)的扩散和控制方法之间的相互作用:建模研究

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摘要

We used a spatial model of a riverine tsetse fly species Glossina palpalis gambiensis life cycle to investigate the interaction between their dispersal and three control methods and to document these interactions using sensitivity analyses. The model is currently limited to gallery forest habitat inhabited by Glossina palpalis gambiensis in the dry season in the sub-humid zone of West Africa. The control methods modelled were traps and targets (TT), insecticide-treated livestock (ITL), and the sterile insect technique (SIT). Both distance dispersed (up to 800 m) and percent of flies dispersing each day (up to 60 %) increased the efficiency of control by TT. Most of this increase occurred for low values of both distance dispersed and percent dispersing, but the increase continued up to the limits tried. The daily movement of cattle assisted the control program and when movement was considerable (up to 600 m daily) the effects were greater than the effects of tsetse dispersal. Random dispersal decreased aggregation and equilibrium population size, and thus also increased the efficiency of SIT. Dispersal that was mostly oriented towards clumps was of much less value for SIT but acted on TT and ITL similarly to random dispersal.
机译:我们使用了一个河流采采蝇蝇种Glossina palpalis gambiensis生命周期的空间模型,研究了它们的扩散与三种控制方法之间的相互作用,并使用敏感性分析记录了这些相互作用。该模型目前仅限于西非半湿润地区旱季Glossina palpalis gambiensis居住的画廊森林栖息地。建模的控制方法是陷阱和目标(TT),经过杀虫剂处理的牲畜(ITL)和无菌昆虫技术(SIT)。分散的距离(最多800 m)和每天分散的果蝇百分比(最多60%)都提高了TT的控制效率。这种增加的大部分发生在距离分散和分散百分比都较低的情况下,但是这种增加一直持续到尝试的极限。牛的日常活动有助于控制计划,并且当活动相当大时(每天最多600 m),其影响要大于采采蝇传播的影响。随机分散降低了聚集和平衡种群的大小,因此也提高了SIT的效率。主要针对团块的分散对于SIT的价值要低得多,但对TT和ITL的作用类似于随机分散。

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