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The importance of topographically corrected null models for analyzing ecological point processes

机译:地形校正的空模型分析生态点过程的重要性

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Analyses of point process patterns and related techniques (e.g., MaxEnt) make use of the expected number of occurrences per unit area and second-order statistics based on the distance between occurrences. Ecologists working with point process data often assume that points exist on a two-dimensional x-y plane or within a three-dimensional volume, when in fact many observed point patterns are generated on a two-dimensional surface existing within three-dimensional space. For many surfaces, however, such as the topography of landscapes, the projection from the surface to the x-y plane preserves neither area nor distance. As such, when these point patterns are implicitly projected to and analyzed in the x-y plane, our expectations of the point pattern's statistical properties may not be met. When used in hypothesis testing, we find that the failure to account for the topography of the generating surface may bias statistical tests that incorrectly identify clustering and, furthermore, may bias coefficients in inhomogeneous point process models that incorporate slope as a covariate. We demonstrate the circumstances under which this bias is significant, and present simple methods that allow point processes to be simulated with corrections for topography. These point patterns can then be used to generate "topographically corrected" null models against which observed point processes can be compared.
机译:点处理模式和相关技术(例如,MAXENT)利用每单位面积的预期次数和基于出现之间的距离的二阶统计数据。生态学家使用点处理数据通常假设在二维X-Y平面上或在三维体积内存在点,当实际上,在存在于三维空间内的二维表面上产生许多观察点模式。然而,对于许多表面,例如景观的地形,从表面到X-Y平面的投影既不保留既不距离。这样,当这些点模式被隐式地投影并在X-Y平面中分析时,我们对点模式的统计特性的期望可能无法满足。当在假设检测中使用时,我们发现未能考虑发电表面的地形可以偏离错误识别聚类的统计测试,并且此外,可以将斜率作为协变量的不均匀点处理模型中的偏置系数偏置系数。我们展示了这种偏差是显着的情况,并提出了允许用地形校正模拟点流程的简单方法。然后可以使用这些点模式来生成“地形校正的”空模型,反对可以比较观察到的点过程。

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