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利用动物移动路径来测量对空间尺度的反应。

Using animal movement paths to measure response to spatial scale.

作者信息

Nams Vilis O

机构信息

Department of Environmental Sciences, Nova Scotia Agricultural College, Box 550, Truro, Nova Scotia B2N 5E3, Canada.

出版信息

Oecologia. 2005 Mar;143(2):179-88. doi: 10.1007/s00442-004-1804-z. Epub 2005 Jan 19.

Abstract

Animals live in an environment that is patchy and hierarchical. I present a method of detecting the scales at which animals perceive their world. The hierarchical nature of habitat causes movement path structure to vary with spatial scale, and the patchy nature of habitat causes movement path structure to vary throughout space. These responses can be measured by a combination of path tortuousity (measured with fractal dimension) versus spatial scale, the variation in tortuousity of small path segments along the movement path, and the correlation between tortuousities of adjacent path segments. These statistics were tested using simulated animal movements. When movement paths contained no spatial heterogeneity, then fractal D and variance continuously increased with scale, and correlation was zero at all scales. When movement paths contained spatial heterogeneity, then fractal D sometimes showed a discontinuity at transitions between domains of scale, variation showed peaks at transitions, and correlations showed a statistically significant positive value at scales smaller than patch size, decreasing to below zero at scales greater than patch size. I illustrated these techniques with movement paths from deer mice and red-backed voles. These new analyses should help understand how animals perceive and react to their landscape structure at various spatial scales, and to answer questions about how habitat structure affects animal movement patterns.

摘要

动物生活在一个斑驳且具有层级结构的环境中。我提出了一种检测动物感知其世界的尺度的方法。栖息地的层级性质导致移动路径结构随空间尺度而变化,而栖息地的斑驳性质导致移动路径结构在整个空间中变化。这些响应可以通过路径曲折度(用分形维数测量)与空间尺度的组合、沿着移动路径的小路径段曲折度的变化以及相邻路径段曲折度之间的相关性来衡量。使用模拟动物运动对这些统计数据进行了测试。当移动路径不包含空间异质性时,分形维数D和方差随尺度不断增加,并且在所有尺度上相关性均为零。当移动路径包含空间异质性时,分形维数D有时在尺度域之间的过渡处显示出不连续性,变化在过渡处显示出峰值,并且相关性在小于斑块大小的尺度上显示出统计上显著的正值,在大于斑块大小的尺度上降至零以下。我用鹿鼠和红背田鼠的移动路径说明了这些技术。这些新的分析应该有助于理解动物如何在各种空间尺度上感知和应对其景观结构,并回答有关栖息地结构如何影响动物运动模式的问题。

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