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The confluences of ideas leading to, and the flow of ideas emerging from, individual-based modeling of riverine fishes

机译:导致的思想的融合以及河流鱼类的个体建模的思想流动

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In this review article, we trace the history of events leading to the development of individual-based models (IBMs) to represent aquatic organisms in rivers and streams. As a metaphor, we present this history as a series of confluences between individual scientists (tributaries) sharing ideas. We describe contributions of these models to science and management. One iconic feature of river IBMs is the linkage between flow and the physical habitat experienced by individual animals, and the first model that focused on this linkage is briefly described. We continue by reviewing the contributions of riverine IBMs to eight broad areas of scientific inquiry. The first four areas include research to understand 1) the effects of flow regimes on fish populations, 2) species interactions (e.g., size-mediated competition and predation), 3) fish movement and habitat selection, and 4) contaminant and water quality impacts on populations. Next, we review research using IBMs 5) to guide conservation biology of imperiled taxa through population viability analysis, including research 6) to understand river fragmentation by dams and reconnection, 7) to understand genetic outcomes for riverine metapopulations, and 8) to anticipate the future effects of temperature and climate change. This rich body of literature has contributed to both theoretical insights (e.g., about animal behavior and life history) and applied insights (e.g., population-level effects of flow regimes, temperature, and the effects of hydropower and other industries that share rivers with aquatic biota). We finish by exploring promising branches that lie ahead in the braided, downstream channel that represents future river modeling research.
机译:在这篇审查文章中,我们追溯了导致开发基于个人的模型(IBM)的事件历史,以代表河流和流中的水生物体。作为一个比喻,我们将此历史作为个体科学家(支流)分享想法之间的一系列交汇处。我们描述了这些模型对科学和管理的贡献。河流IBMS的一个标志性的特征是流动与个体动物所经历的物理栖息地的连锁,并且简要描述了专注于这种联系的第一模型。我们通过审查河流IBMS对八大科学调查领域的贡献。前四个领域包括理解1)流动制度对鱼群的影响,2)物种相互作用(例如,大小介导的竞争和捕食),3)鱼类运动和栖息地选择,4)污染物和水质的影响关于人群。接下来,我们通过IBMS 5)通过人口活力分析,包括研究6)来指导危险出生物的保护生物学,以了解水坝和重组,7)了解河流的遗传结果,以及8)预期未来的温度和气候变化的影响。这种丰富的文学体系为理论上见解(例如,关于动物行为和生命史)和应用的见解(例如,流动制度的人口水平,温度和水电和其他行业的影响以及与水生共享河流的影响Biota)。我们通过探索在编织,下游渠道中探讨的有前途的分支完成,这些分支代表未来河流建模研究。

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