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Individual-to-Resource Landscape Interaction Strength Can Explain Different Collective Feeding Behaviours

机译:个人与资源之间的景观互动强度可以解释不同的集体进食行为

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摘要

Taking in sufficient quantities of nutrients is vital for all living beings and in doing so, individuals interact with the local resource environment. Here, we focus explicitly on the interactions between feeding individuals and the resource landscape. In particular, we are interested in the emergent movement dynamics resulting from these interactions. We present an individual-based simulation model for the movement of populations in a resource landscape that allows us to vary the strength of the interactions mentioned above. The key assumption and novelty of our model is that individuals can cause the release of additional nutrients, as well as consuming them. Our model produces clear predictions. For example, we expect more tortuous individual movement paths and higher levels of aggregation in populations occupying homogeneous environments where individual movement makes more nutrients available. We also show how observed movement dynamics could change when local nutrient sources are depleted or when the population density increases. Our predictions are testable and qualitatively reproduce the different feeding behaviours observed in filter-feeding ducks, for example. We suggest that considering two-way interactions between feeding individuals and resource landscapes could help to explain fine-scale movement dynamics.
机译:摄取足够的营养对于所有生物都是至关重要的,因此个体与当地资源环境互动。在这里,我们明确地专注于喂养个体和资源格局之间的相互作用。特别是,我们对由这些相互作用导致的紧急运动动态感兴趣。我们为资源格局中的人口流动提供了一个基于个体的仿真模型,该模型使我们能够改变上述互动的强度。我们模型的关键假设和新颖之处在于,个体可以导致其他营养素的释放以及消耗。我们的模型产生清晰的预测。例如,我们期望在居住于同质环境的人群中,更多的曲折个体运动路径和更高水平的聚集,个体运动会提供更多的养分。我们还展示了当局部营养源耗尽或人口密度增加时,观察到的运动动态如何变化。例如,我们的预测是可以检验的,并且定性地重现了在滤食鸭子中观察到的不同喂养行为。我们建议考虑进食个体与资源景观之间的双向互动可以帮助解释精细的运动动态。

著录项

  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(8),10
  • 年度 -1
  • 页码 e75879
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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