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首页> 外文期刊>The Journal of Applied Ecology >Simple individual-based models effectively represent Afrotropical forest bird movement in complex landscapes
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Simple individual-based models effectively represent Afrotropical forest bird movement in complex landscapes

机译:简单的基于单独的模型有效地代表Afrotropical森林鸟运动复杂的景观

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1. Reliable estimates of dispersal rates between habitat patches (i.e. functional connectivity) are critical for predicting long-term effects of habitat fragmentation on population persistence. Connectivity measures are frequently derived from least cost path or graph-based approaches, despite the fact that these methods make biologically unrealistic assumptions. Individual-based models (IBMs) have been proposed as an alternative as they allow modelling movement behaviour in response to landscape resistance. However, IBMs typically require excessive data to be useful for management. Here, we test the extent to which an IBM requiring only an uncomplicated set of movement rules [the 'stochastic movement simulator' (SMS)] can predict animal movement behaviour in real-world landscapes. 2. Movement behaviour of two forest birds, the Cabanis's greenbul Phyllastrephus cabanisi (a forest specialist) and the white-starred robin Pogonocichla stellata (a habitat generalist), across an Afrotropical matrix was simulated using SMS. Predictions from SMS were evaluated against a set of detailed movement paths collected by radiotracking homing individuals. 3. SMS was capable of generating credible predictions of bird movement, although simulations were sensitive to the cost values and the movement rules specified. Model performance was generally highest when movement was simulated across low-contrasting cost surfaces and when virtual individuals were assigned low directional persistence and limited perceptual range. 4. SMS better predicted movements of the habitat specialist than the habitat generalist, which highlights its potential to model functional connectivity when species movements are affected by the matrix. 5. Synthesis and applications. Modelling the dispersal process with greater biological realism is likely to be critical for improving our predictive capability regarding functional connectivity and population persistence. For more realistic models to be widely applied, it is vital that their application is not overly complicated or data demanding. Here, we show that given relatively basic understanding of a species' dispersal ecology, the stochastic movement simulator represents a promising tool for estimating connectivity, which can help improve the design of functional ecological networks aimed at successful species conservation.
机译:1. 栖息地的补丁(即功能连通性)预测是至关重要的长期影响的栖息地的分裂人口持久性。经常来自连接措施最小成本路径或图论方法,尽管这些方法生物不切实际的假设。提出了基于单独的模型(ibm)作为替代,他们允许造型运动行为以应对景观阻力。过多的用于管理数据。我们测试IBM只需要的程度(一组简单的运动规则“随机运动模拟器”(SMS)]在实际预测动物运动行为风景。鸟类,卡巴尼斯的greenbul Phyllastrephuscabanisi(森林专家)white-starred罗宾Pogonocichla stellata (a在一个Afrotropical栖息地多面手)矩阵是模拟使用短信。短信是根据一组详细的评估收集的运动路径radiotracking归航个人。鸟运动的可靠预测,尽管模拟是敏感的价值和成本指定的运动规则。一般运动模拟时最高在低对比度的表面,当成本虚拟人分配较低的方向持久性和知觉范围有限。更好地预测运动的栖息地专家比栖息地多面手,突显出其潜在的功能模型连接时物种运动都受到影响由矩阵。造型的传播过程生物对现实主义可能是至关重要的改善我们的预测能力有关功能连通性和人口持久性。他们的广泛应用,它是至关重要的应用程序不是过于复杂或数据要求。一个物种的传播的基本理解生态、随机运动模拟器代表一个有前途的工具估计连接,可以帮助改善设计针对功能的生态网络成功的物种保护。

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