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Estimation of the diffusion rate and crossing probability for biased edge movement between two different types of habitat

机译:两种不同类型的生境之间偏向边缘运动的扩散率和穿越概率的估计

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摘要

One of the fundamental goals of ecology is to examine how dispersal affects the distribution and dynamics of insects across natural landscapes. These landscapes are frequently divided into patches of habitat embedded in a matrix of several non-habitat regions, and dispersal behavior could vary within each landscape element as well as the edges between elements. Reaction-diffusion models are a common way of modeling dispersal and species interactions in such landscapes, but to apply these models we also need methods of estimating the diffusion rate and any edge behavior parameters. In this paper, we present a method of estimating the diffusion rate using the mean occupancy time for a circular region. We also use mean occupancy time to estimate a parameter (the crossing probability) that governs one type of edge behavior often used in these models, a biased random walk. These new methods have some advantages over other methods of estimating these parameters, including reduced computational cost and ease of use in the field. They also provide a method of estimating the diffusion rate for a particular location in space, compared to existing methods that represent averages over large areas. We further examine the statistical properties of the new method through simulation, and discuss how mean occupancy time could be estimated in field experiments.
机译:生态学的基本目标之一是研究扩散如何影响昆虫在自然景观中的分布和动态。这些景观经常被分成嵌入在几个非栖息地区域的矩阵中的栖息地斑块,并且散布行为可能在每个景观元素内以及元素之间的边缘发生变化。反应扩散模型是在此类景观中模拟扩散和物种相互作用的一种常用方法,但是要应用这些模型,我们还需要估算扩散速率和任何边缘行为参数的方法。在本文中,我们提出了一种使用圆形区域平均占用时间估算扩散率的方法。我们还使用平均占用时间来估计一个参数(交叉概率),该参数控制这些模型中经常使用的一种边缘行为类型,即偏向随机游走。与估算这些参数的其他方法相比,这些新方法具有一些优势,包括降低的计算成本和在现场的易用性。与代表大面积平均值的现有方法相比,它们还提供了一种估计空间中特定位置扩散速率的方法。我们通过仿真进一步检查了该新方法的统计特性,并讨论了如何在野外实验中估计平均占用时间。

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