Landscape connectivity: A conservation application of graph theory

景观连通性 计算机科学 图论 图形 栖息地 集合种群 生物扩散 景观生态学 生态学 地理 理论计算机科学 人口 数学 生物 人口学 组合数学 社会学
作者
Andrew G. Bunn,Dean L. Urban,Timothy H. Keitt
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:59 (4): 265-278 被引量:558
标识
DOI:10.1006/jema.2000.0373
摘要

We use focal-species analysis to apply a graph-theoretic approach to landscape connectivity in the Coastal Plain of North Carolina. In doing so we demonstrate the utility of a mathematical graph as an ecological construct with respect to habitat connectivity. Graph theory is a well established mainstay of information technology and is concerned with highly efficient network flow. It employs fast algorithms and compact data structures that are easily adapted to landscape-level focal species analysis. American mink (Mustela vison) and prothonotary warblers (Protonotaria citrea) share the same habitat but have different dispersal capabilities, and therefore provide interesting comparisons on connections in the landscape. We built graphs using GIS coverages to define habitat patches and determined the functional distance between the patches with least-cost path modeling. Using graph operations concerned with edge and node removal we found that the landscape is fundamentally connected for mink and fundamentally unconnected for prothonotary warblers. The advantage of a graph-theoretic approach over other modeling techniques is that it is a heuristic framework which can be applied with very little data and improved from the initial results. We demonstrate the use of graph theory in a metapopulation context, and suggest that graph theory as applied to conservation biology can provide leverage on applications concerned with landscape connectivity.
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