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Modelling the spatial dynamics of a recovering species: the Grey Heron Ardea cinerea in France

机译:模拟恢复物种的空间动力学:法国的灰鹭苍鹭

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In many countries, the implementation of measures to protect declining species has led to the recolonization of some areas by bird species within their historic range. There is, however, a lack of quantitative tools for exploring and projecting such large-scale dynamics. Here, we present an approach that makes use of both census and habitat suitability data and integrates them into a spatially explicit model of colonization dynamics (cellular automaton). The Grey Heron Ardea cinerea, which has recently recolonized much of France following legal protection measures, was used as a focal species. Data analysis allowed us to quantify the positive effects of habitat quality on the probability of colonization, and to uncover both positive and negative density-dependent colony settlement processes. Projective simulations then allowed us to determine an inflection point in global colonization dynamics and predict a significant reduction in the colonization rate during the next 50 years. This makes it possible to project the spatial distribution of the species at different timescales, and to estimate the carrying capacity of France for the species (around 1500 colonies).
机译:在许多国家,保护物种数量下降的措施的实施导致鸟类在其历史范围内重新定殖。但是,缺乏用于探索和预测这种大规模动力学的定量工具。在这里,我们提出一种利用人口普查和栖息地适应性数据的方法,并将它们整合到一个殖民化动力学(细胞自动机)的空间明确模型中。最近通过法律保护措施使法国大部分地区重新定居的灰鹭Ardea cinerea被用作重​​点物种。数据分析使我们能够量化栖息地质量对定殖概率的积极影响,并揭示正负密度依赖的菌落沉降过程。然后,通过投影模拟,我们可以确定全球殖民化动态中的拐点,并预测在未来50年中殖民化率的显着降低。这使得有可能在不同的时间尺度上预测该物种的空间分布,并估计法国对该物种的承载能力(约1500个殖民地)。

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