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Estimating the elimination feasibility in the end game of control efforts for parasites subjected to regular mass drug administration: Methods and their application to schistosomiasis

机译:估计在进行常规大规模药物管理的寄生虫控制工作的最终结果中消除的可行性:方法及其在血吸虫病中的应用

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摘要

Progress towards controlling and eliminating parasitic worms, including schistosomiasis, onchocerciasis, and lymphatic filariasis, is advancing rapidly as national governments, multinational NGOs, and pharmaceutical companies launch collaborative chemotherapeutic control campaigns. Critical questions remain regarding the potential for achieving elimination of these infections, and analytical methods can help to quickly estimate progress towards—and the probability of achieving—elimination over specific timeframes. Here, we propose the effective reproduction number, Reff, as a proxy of elimination potential for sexually reproducing worms that are subject to poor mating success at very low abundance (positive density dependence, or Allee effects). Reff is the number of parasites produced by a single reproductive parasite at a given stage in the transmission cycle, over the parasite’s lifetime—it is the generalized form of the more familiar basic reproduction number, R0, which only applies at the beginning of an epidemic—and it can be estimated in a ‘model-free’ manner by an estimator (>‘ε’). We introduce ε, demonstrate its estimation using simulated data, and discuss how it may be used in planning and evaluation of ongoing elimination efforts for a range of parasitic diseases.
机译:随着各国政府,跨国非政府组织和制药公司开展协作性化学疗法控制活动,控制和消除包括血吸虫病,盘尾丝虫病和淋巴丝虫病在内的寄生虫的进展迅速。关于实现消除这些感染的潜力的关键问题仍然存在,分析方法可以帮助快速估计在特定时间范围内消除消灭感染的进展以及实现消灭的可能性。在此,我们提出有效繁殖数Reff,作为有性繁殖蠕虫的消除潜力的代用品,这些蠕虫在非常低的丰度(正密度依赖性或Allee效应)下交配成功率较低。 Reff是在传播周期内,在传播周期内给定阶段的单个生殖寄生虫产生的寄生虫数量,它是更常见的基本繁殖编号R0的广义形式,仅在流行开始时适用-可以由估算器(>'ε')以“无模型”方式进行估算。我们介绍了ε,使用模拟数据演示了其估计,并讨论了如何将其用于计划和评估各种寄生虫疾病正在进行的消除工作。

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