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首页> 外文期刊>The Journal of Applied Ecology >Cost distance modelling of landscape connectivity and gap-crossing ability using radio-tracking data
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Cost distance modelling of landscape connectivity and gap-crossing ability using radio-tracking data

机译:成本距离造型景观连通性使用信号和gap-crossing能力数据

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1. Landscape connectivity, the ability of species to move between different elements of a landscape, has been evaluated mainly by expert opinion, proxy data or homing experiments, all of which have major limitations. Cost distance modelling can overcome these limitations, but the resistance values of different landscape elements are difficult to estimate. 2. Here, we present a novel method combining step selection functions with cost distance modelling to assess functional landscape connectivity. Instead of relying on movement metrics, the method uses a case-control design to assess whether the chosen steps differ froma randomsample of alternatives of similar lengths. Alternative models of landscape connectivity and dispersal behaviour are represented as maps of resistance values, and compared using an information-theoretic approach to select those hypotheses that maximize the discrepancy between chosen steps and random alternatives.3. We applied this method to daily locations recorded along the dispersal paths of 38 juvenile North Island robins Petroica longipes in a fragmented pastoral landscape in New Zealand. We compared models with different resistance values for four recognized vegetation types in the landscape and assessed gap-crossing behaviour by changing the resistance value of pasture as a function of distance to the closest woody vegetation. 4. Model comparison showed that juvenile robins move in decreasing order of preference through native forest, plantations and shrubland, and showed a marked reluctance for flying over pasture. Under the best model, the largest gap crossed was 110 m. 5. Synthesis and applications. In combination with data on the total cost distances travelled by dispersers, cost distance models of landscape connectivity can be used to predict distributions of dispersal distances in any landscape with similar vegetation types. They can therefore predict responses of species to landscape management or predict spatial dynamics of populations following reintroduction. Our method is potentially applicable to any dispersal data, even with a relatively small number of locations recorded in complex landscapes, meaning models can be fitted to data that cannot be analysed using previous method. Tools are freely available for download to allow researchers and wildlife managers to apply our methods to their own data.
机译:1. 不同的元素之间移动景观,主要由专家评估看来,代理数据或导航实验,所有的主要的局限性。造型可以克服这些限制,但是电阻的值不同的景观元素很难估计。新方法结合步骤选择功能与成本距离模型来评估功能景观连通性。运动指标,采用病例对照的方法设计评估是否选择步骤有所不同从randomsample相似的替代品长度。连通性和传播行为表示为地图的阻力值,而使用一个信息理论方法选择那些最大化的假设差异和随机选择步骤alternatives.3。沿传播路径的位置记录38岁的少年北岛知更鸟Petroica longipes在新的一个支离破碎的田园景观新西兰。四个公认的植被阻力值类型的景观和gap-crossing评估通过改变电阻值的行为牧场是最近距离的函数木本植物。少年知更鸟递减的顺序偏好通过原始森林,种植园灌丛带,表现出显著的不情愿飞越牧场。最大差距越过110。5。应用程序。总成本距离乘坐的作用,景观连通性的成本距离模型可以被用来预测分布分散在任何景观具有类似的距离植被类型。景观管理或反应的物种预测种群的空间动态重新引入。适用于任何传播数据,即使记录在相对较少的位置复杂的景观,这意味着模型可以安装使用以前的数据无法分析方法。允许研究人员和野生动物管理人员我们的方法适用于自己的数据。

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