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首页> 外文期刊>Ecological indicators >Does using species abundance data improve estimates of species diversity from remotely sensed spectral heterogeneity?
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Does using species abundance data improve estimates of species diversity from remotely sensed spectral heterogeneity?

机译:使用物种丰度数据是否可以改善遥感光谱异质性对物种多样性的估计?

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摘要

Different approaches for the assessment of biodiversity by means of remote sensing were developed over the last decades. A new approach, based on the spectral variation hypothesis, proposes that the spectral heterogeneity of a remotely sensed image is correlated with landscape structure and complexity which also reflects habitat heterogeneity which itself is known to enhance species diversity. In this context, previous studies only applied species richness as a measure of diversity. The aim of this paper was to analyze the relationship of richness and abundance-based diversity measures with spectral variability and compare the results at two scales. At three different test sites in Central Namibia, measures of vascular plant diversity was sampled at two scales - 100 m~2 and 1000 m~2. Hyperspectral remote sensing data were collected for the study sites and spectral variability, was calculated at plot level. Ordinary least square regression was used to test the relationship between species richness and the abundance-based Shannon Index and spectral variability. We found that Shannon Index permanently achieved better results at all test sites especially at 1000 m~2, Even when all sites where pooled together, Shannon index was still significantly related with spectral variability at 1000 m~2. We suggest incorporating abundance-based diversity measures in studies of relationships between ecological and spectral variability. The contribution made by the high spectral and spatial resolution of the hyperspectral sensor is discussed.
机译:在过去的几十年中,人们开发了通过遥感评估生物多样性的不同方法。一种基于光谱变化假说的新方法提出,遥感图像的光谱异质性与景观结构和复杂性相关,这也反映了栖息地异质性,而栖息地异质性本身已知会增强物种多样性。在这种情况下,以前的研究仅将物种丰富度作为多样性的量度。本文的目的是分析丰富度和基于丰度的多样性测度与光谱变异性之间的关系,并比较两个尺度的结果。在纳米比亚中部的三个不同测试地点,以两种尺度(100 m〜2和1000 m〜2)对维管植物多样性进行了测量。收集了研究地点的高光谱遥感数据,并在地块水平上计算了光谱变异性。普通最小二乘回归用于检验物种丰富度与基于丰度的香农指数和光谱变异性之间的关系。我们发现,香农指数在所有测试地点尤其是在1000 m〜2处永久性地取得了更好的结果。即使所有地点聚集在一起,香农指数仍然与1000 m〜2处的光谱变异性显着相关。我们建议在研究生态和光谱变异性之间的关系时纳入基于丰度的多样性度量。讨论了高光谱传感器的高光谱和空间分辨率所做出的贡献。

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  • 来源
    《Ecological indicators》 |2010年第2期|390-396|共7页
  • 作者单位

    University of Hamburg, Biocentre Klein Flottbek, Ohnhorststrasse 18, 22609 Hamburg, Germany German Aerospace Center, 82203 Oberpfaffenhofen, Germany;

    University of Hamburg, Biocentre Klein Flottbek, Ohnhorststrasse 18, 22609 Hamburg, Germany;

    Universitd di Siena, Dipartimento di Scienze Ambientali, via Mattioli 4, 53100, Siena, Italy TerraData environmetrics, Dipartimento di Scienze Ambientali, via Mattioli 4, 53100, Siena, Italy;

    German Aerospace Center, 82203 Oberpfaffenhofen, Germany;

    University of Hamburg, Biocentre Klein Flottbek, Ohnhorststrasse 18, 22609 Hamburg, Germany;

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

    savannah; spectral variation hypothesis; shannon Index; species richness; scale; hyperspectral;

    机译:萨凡纳光谱变化假说香农指数物种丰富度;规模;高光谱;

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