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Population-scale treatment informs solutions for control of environmentally transmitted wildlife disease

机译:人口规模的治疗告知解决方案控制环境野生动物传播疾病

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摘要

1. Long-term pathogen control or eradication in wildlife is rare and represents a major challenge in conservation. Control is particularly difficult for environmentally transmitted pathogens, including some of the most conservation-critical wildlife diseases. 2. We undertook a treatment programme aimed at population-scale eradication of the environmentally transmitted Sarcoptes scabiei mite (causative agent of sarcoptic mange) during an epizootic in bare-nosed wombats (Vombatus ursinus). Field trial results were used to parameterize a mechanistic host-disease model that explicitly described indirect transmission, host behaviour and viable disease intervention methods. 3. Model analysis shows that elimination of S. scabiei in the wild is most sensitive to the success of treatment delivery, and duration of the programme. In addition, we found the frequency that wombats switch burrows was an important positive driver of mite persistence. 4. Synthesis and applications. This research emphasizes the utility of applying model-guided management techniques in order to achieve practical solutions for controlling disease in the field. We find that control efforts of Sarcoptes scabiei are most successful when simultaneous improvements are made to the current bestpractice protocol, specifically the implementation of better treatment application methods in combination with a longer lasting treatment. These suggested management changes may also reduce the resources and field effort required to implement a successful regime. Furthermore, our approach and findings have applicability to other species affected by S. scabiei (e.g. wolves, red foxes, Spanish ibex and American black bear), as well as other conservation-critical systems involving environmental transmission (e.g. bat white-nose syndrome and amphibian chytridiomycosis).
机译:1. 野生动物是罕见的,是一个重大的挑战在保护。困难的环境传播病原体,包括一些最conservation-critical野生动物疾病。进行了一次旨在治疗项目人口规模的根除的环境传播证实scabiei螨(病原体sarcoptic兽疥癣)期间家畜流行病bare-nosed袋熊(Vombatusursinus)。参数化一个机械的宿主病模型明确描述间接传播,主机行为和可行的疾病干预方法。在野外的美国scabiei是最敏感的治疗的成功交付,和持续时间的计划。洞穴是一个频率袋熊开关螨虫持久性的重要的积极推动力。合成和应用程序。强调应用model-guided的效用管理技术来实现切实可行的解决方案来控制疾病这个领域。证实scabiei最成功的时候同时改进的电流最佳实践协议,特别是实现更好的治疗应用方法结合持久治疗。还能减少资源和现场工作需要实现一个成功的制度。此外,我们的方法和结果适用于其他物种的影响。scabiei(如狼,红狐狸,西班牙ibex和美国黑熊),以及其他conservation-critical系统涉及环境传播(如蝙蝠白鼻综合症和两栖动物壶)。

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