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Measuring habitat fragmentation: An evaluation of landscape pattern

机译:测量栖息地破碎化:景观格局评估

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摘要

1. Landscape patterns influence a range of ecological processes at multiple spatial scales. Landscape pattern metrics are often used to study the patterns that result from the linear and nonlinear interactions between spatial aggregation and abundance of habitat. 2. However, many class-level pattern metrics are highly correlated with habitat abundance, making their use as a measure of habitat fragmentation problematic. 3. We argue that a class-level pattern metric should be (1) able to differentiate landscapes across a range of spatial aggregations, and (2) independent of habitat abundance, if it is to be used to distinguish between effects of habitat amount and fragmentation. 4. Based on these criteria and using both simulated and actual landscapes, we evaluated 64 class-level pattern metrics. These metrics were reclassified into four groups based on their correlation with aggregation and abundance. 5. Among all these metrics, nine were considered robust for fragmentation measurements, which cover most of the characteristics that define pattern, including core area, shape, proximity / isolation, contrast, and contagion / interspersion. 6. Optimal metrics for individual studies will depend on both biological rationales and statistically robust metrics that are appropriate for achieving each study objectives
机译:1.景观格局在多个空间尺度上影响一系列生态过程。景观格局度量通常用于研究空间聚集与栖息地丰富之间线性和非线性相互作用产生的格局。 2.但是,许多类别级别的模式指标与栖息地丰富度高度相关,因此将其用作衡量栖息地破碎化程度的指标是有问题的。 3.我们认为,如果要用于区分生境数量和生境的影响,则类别级别的度量标准应该是(1)能够区分一系列空间聚集的景观,以及(2)独立于生境的丰富度。碎片化。 4.基于这些标准,并使用模拟景观和实际景观,我们评估了64个类级别的模式指标。根据这些指标与聚集度和丰度的相关性,将它们重新分为四类。 5.在所有这些指标中,有九个被认为对碎片测量具有鲁棒性,涵盖了定义模式的大多数特征,包括核心区域,形状,接近度/隔离度,对比度和传染性/散布性。 6.个别研究的最佳指标将取决于生物学原理和适合实现每个研究目标的统计学上可靠的指标

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