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首页> 外文期刊>Ecological Complexity >Investigating species-environment relationships at multiple scales: Differentiating between intrinsic scale and the modifiable areal unit problem
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Investigating species-environment relationships at multiple scales: Differentiating between intrinsic scale and the modifiable areal unit problem

机译:在多个尺度上研究物种与环境的关系:区分内在尺度和可修改的面积单位问题

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摘要

In ecology, multi-scale analyses are commonly performed to identify the scale at which a species interacts with its environment (intrinsic scale). This is typically carried out using multi-scale species-environment models that compare the relationship between ecological attributes (e.g., species diversity) measured with point data to environmental data (e.g. vegetation cover) for the surrounding area within buffers of multiple sizes. The intrinsic scale is identified as the buffer size at which the highest correlation between environmental and ecological variables occurs. We present the first investigation of how the spatial resolution of remote sensing environmental data can influence the identification of the intrinsic scale using multi-scale species-environment models. Using the virtual ecologist approach we tested this influence using vegetation cover spatial data and a simulated species-environment relationship derived from the same spatial data. By using a simulation model there was a known truth to use as a benchmark to measure accuracy. Our findings indicate that by varying the spatial resolution of the environmental data, the intrinsic scale may be incorrectly identified. In some cases, the errors in the intrinsic scale identified were close to the maximum value possible that could be measured by this experiment. Consequently, multi-scale ecological analyses may not be suitable for distinguishing scale patterns caused by the relationship between an organism and its environment from scale patterns caused by the effect of changing spatial resolution: a phenomenon referred to as the modifiable areal unit problem (MAUP). Thus, observed scale-dependent ecological patterns may be an artefact of the observation of ecological data, not the ecological phenomenon. This study concludes with some suggestions for future work to quantify the effect of the MAUP on multi-scale studies and develop generalisations that can be used to assess when multi-scale analyses have the potential to produce spurious results.
机译:在生态学中,通常进行多尺度分析以识别物种与其环境相互作用的尺度(内在尺度)。这通常是使用多尺度的物种-环境模型来执行的,该模型比较了用点数据测得的生态属性(例如,物种多样性)与环境数据(例如,植被覆盖度)在多种大小的缓冲区内周围区域之间的关系。内在尺度被确定为发生环境和生态变量之间最高相关性的缓冲区大小。我们目前对遥感环境数据的空间分辨率如何影响使用多尺度物种-环境模型的内在尺度的识别进行了首次调查。使用虚拟生态学家方法,我们使用植被覆盖空间数据以及从相同空间数据得出的模拟物种与环境关系,测试了这种影响。通过使用仿真模型,可以将已知的事实用作衡量准确性的基准。我们的发现表明,通过改变环境数据的空间分辨率,可能会错误地识别出内在尺度。在某些情况下,所识别的内在尺度的误差接近该实验可能测量的最大值。因此,多尺度生态分析可能不适用于区分由生物与其环境之间的关系引起的尺度模式与由改变空间分辨率的影响所引起的尺度模式:这种现象称为可修改的面积单位问题(MAUP) 。因此,观察到的与比例有关的生态模式可能是观察生态数据而不是生态现象的产物。这项研究最后提出了一些建议,供以后进行工作以量化MAUP对多尺度研究的影响,并得出可用于评估多尺度分析何时可能产生虚假结果的概括。

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  • 来源
    《Ecological Complexity 》 |2012年第9期| p.91-102| 共12页
  • 作者单位

    Centre for Mined Land Rehabilitation, Sustainable Minerals Institute, University of Queensland, Sir James Foots Building, Cnr Staff House and College Roads, St. Lucia, QLD 4072, Australia,School of Mathematical and Ceospatial Sciences, RMIT University, CPO Box 2476, Melbourne, VIC 3001, Australia;

    School of Mathematical and Ceospatial Sciences, RMIT University, CPO Box 2476, Melbourne, VIC 3001, Australia,School of Global Studies, Social Science and Planning, RMIT University, CPO Box 2476, Melbourne. VIC 3001, Australia;

    School of Mathematical and Ceospatial Sciences, RMIT University, CPO Box 2476, Melbourne, VIC 3001, Australia;

    School of Global Studies, Social Science and Planning, RMIT University, CPO Box 2476, Melbourne. VIC 3001, Australia;

    School of Global Studies, Social Science and Planning, RMIT University, CPO Box 2476, Melbourne. VIC 3001, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multi-scale; modifiable areal unit problem; spatial resolution; spatial uncertainty; remote sensing; species-environment relationships; virtual ecologist; simulation modelling;

    机译:多尺度可修改的面积单位问题;空间分辨率空间不确定性遥感;物种与环境的关系;虚拟生态学家;仿真建模;

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