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Model-guided fieldwork: practical guidelines for multidisciplinary research on wildlife ecological and epidemiological dynamics

机译:以模型为指导的实地考察:野生动植物生态学和流行病学动力学多学科研究的实用指南

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摘要

Infectious disease ecology has recently raised its public profile beyond the scientific community due to the major threats that wildlife infections pose to biological conservation, animal welfare, human health and food security. As we start unravelling the full extent of emerging infectious diseases, there is an urgent need to facilitate multidisciplinary research in this area. Even though research in ecology has always had a strong theoretical component, cultural and technical hurdles often hamper direct collaboration between theoreticians and empiricists. Building upon our collective experience of multidisciplinary research and teaching in this area, we propose practical guidelines to help with effective integration among mathematical modelling, fieldwork and laboratory work. Modelling tools can be used at all steps of a field-based research programme, from the formulation of working hypotheses to field study design and data analysis. We illustrate our model-guided fieldwork framework with two case studies we have been conducting on wildlife infectious diseases: plague transmission in prairie dogs and lyssavirus dynamics in American and African bats. These demonstrate that mechanistic models, if properly integrated in research programmes, can provide a framework for holistic approaches to complex biological systems.
机译:由于野生生物感染对生物保护,动物福利,人类健康和粮食安全构成重大威胁,传染病生态学最近已在科学界之外引起了公众关注。随着我们开始全面了解新出现的传染病,迫切需要促进这一领域的多学科研究。尽管生态学研究一直具有强大的理论成分,但文化和技术上的障碍常常会阻碍理论家和经验家之间的直接合作。基于我们在该领域多学科研究和教学的集体经验,我们提出实用指南,以帮助数学建模,实地考察和实验室工作之间的有效整合。建模工具可用于实地研究计划的所有步骤,从制定工作假设到实地研究设计和数据分析。我们通过两个关于野生动植物传染病的案例研究说明了模型指导的野外工作框架:草原土拨鼠的鼠疫传播和美国和非洲蝙蝠的狂犬病病毒动力学。这些表明,如果将机械模型正确地集成到研究计划中,则可以为复杂生物系统的整体方法提供框架。

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