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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >How mathematical epidemiology became a field of biology: a commentary on Anderson and May (1981) 'The population dynamics of microparasites and their invertebrate hosts'
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How mathematical epidemiology became a field of biology: a commentary on Anderson and May (1981) 'The population dynamics of microparasites and their invertebrate hosts'

机译:数学流行病学如何成为生物学领域:关于安德森和梅(1981)“微寄生虫及其无脊椎动物宿主的种群动态”的评论

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We discuss the context, content and importance of the paper 'The population dynamics of microparasites and their invertebrate hosts', by R. M. Anderson and R. M. May, published in the Philosophical Transactions of the Royal Society as a stand-alone issue in 1981. We do this from the broader perspective of the study of infectious disease dynamics, rather than the specific perspective of the dynamics of insect pathogens. We argue that their 1981 paper fits seamlessly in the systematic study of infectious disease dynamics that was initiated by the authors in 1978, combining effective use of simple mathematical models, firmly rooted in biology, with observable or empirically measurable ingredients and quantities, and promoting extensive capacity building. This systematic approach, taking ecology and biology rather than applied mathematics as the motivation for advance, proved essential for the maturation of the field, and culminated in their landmark textbook of 1991. This commentary was written to celebrate the 350th anniversary of the journal Philosophical Transactions of the Royal Society.
机译:我们讨论RM安德森(RM Anderson)和RM梅(RM May)作为独立刊物于1981年发表在《皇家学会哲学交易》上的论文“微寄生虫及其无脊椎动物宿主的种群动态”的背景,内容和重要性。这是从更广泛的角度研究传染病动态,而不是从昆虫病原体动态的特定角度出发。我们认为,他们1981年的论文与作者在1978年发起的传染病动力学系统研究无缝结合,结合了有效使用简单的数学模型(扎根于生物学)与可观察或经验可测量的成分和数量的组合,并促进了广泛的研究能力建设。这种系统的方法以生态学和生物学而不是应用数学作为前进的动力,被证明对该领域的成熟至关重要,并在其1991年具有里程碑意义的教科书中达到了顶峰。撰写此评论是为了庆祝《哲学学报》出版350周年。皇家学会。

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