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Taking malaria transmission out of the bottle: implications of mosquito dispersal for vector-control interventions.

机译:消除疟疾传播:蚊子传播对媒介控制干预的影响。

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摘要

Most malaria transmission models assume enclosed systems of people, parasites, and vectors in which neither emigration nor immigration of mosquitoes is considered. This simplification has facilitated insightful analyses but has substantial limitations for evaluating control measures in the field. Here we show that mosquito dispersal can confound conventional approaches to evaluating malaria vector-control interventions, and explore this association with a model of two villages between which mosquito subpopulation exchange occurs. Exchange of mosquitoes between such subpopulations can readily explain the discrepancy between experimental efficacy measurements for insecticide-treated nets and their much lower apparent effectiveness when in use. Our results indicate that current approaches to assessing malaria interventions that confer community-level protection may be severely compromised by mosquito dispersal in many endemic settings. The true effectiveness of many vector-control methods may be much greater than previously appreciated and the application of such interventions should be consolidated into larger contiguous spatial units so that more effective local suppression of malaria can be achieved. Spatially explicit modelling formats that consider vector dispersal as a determinant of malaria transmission and control are needed urgently for rational planning and evaluation of efforts to roll back malaria.
机译:大多数疟疾传播模型都假设有人,寄生虫和媒介为封闭的系统,其中既不考虑蚊子的迁徙也不考虑蚊子的迁徙。这种简化有助于进行有洞察力的分析,但在评估现场控制措施方面有很大的局限性。在这里,我们表明蚊子传播可以混淆评估疟疾媒介控制干预措施的常规方法,并与两个村庄之间发生蚊子种群交换的模型进行探讨。这些亚群之间蚊子的交换可以很容易地解释杀虫剂处理过的蚊帐的实验功效测量值与使用时其明显较低的功效之间的差异。我们的结果表明,在许多地方性环境中,蚊子传播可能会严重损害评估社区干预措施的评估疟疾干预措施的当前方法。许多病媒控制方法的真正有效性可能比以前认识到的要大得多,因此应将此类干预措施的应用合并为较大的连续空间单位,以便可以更有效地局部抑制疟疾。迫切需要将媒介传播视为疟疾传播和控制的决定因素的空间显式建模格式,以便合理规划和评估减少疟疾的工作。

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