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How to detect desert trees using CORONA images: Discovering historical ecological data

机译:如何使用CORONA影像检测沙漠树木:发现历史生态数据

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Lack of appropriate historical data has seriously impeded research into the extent and effects of deforestation in arid lands, but the declassification of CORONA satellite images has now made it possible to study long-term changes in arboreal vegetation. The potential and limitations of such images for long-term vegetation studies are scrutinized in the light of this research. High-resolution images (ca. 2.7m) from 1965 are compared to field data (2003) of individually mapped wadi trees (Acacia tortilis and Balanites aegyptiaca) from 20 different sites in the Eastern Desert of Egypt. Of trees mapped in 2003 (canopy area (CA) > 6 m~2) 70% was detected in the imagery. A spatial classification shows that between 9% and 55% of the population was concealed by landscape elements that reduce image contrast. The study indicates that 97% of the population mapped in 2003 was already present in 1965 and that trees grow slowly and are older than previously assumed. Pollarded trees were detected in the imagery, and the resultant reduction in CA may lead to misinterpretations in change analyses. CORONA images offer a spatial and temporal dimension for ecological information which other data sources cannot furnish at a comparable cost, coverage, resolution or accessibility.
机译:缺乏适当的历史数据严重阻碍了对干旱土地上森林砍伐的程度和影响的研究,但是CORONA卫星图像的解密现在使研究树木植被的长期变化成为可能。根据这项研究,仔细研究了此类图像用于长期植被研究的潜力和局限性。将1965年的高分辨率图像(约2.7m)与来自埃及东部沙漠20个不同地点的单独绘制的旱谷树(金合欢tortilis和Balanites aegyptiaca)的实地数据(2003年)进行比较。在2003年绘制的树木中(树冠面积(CA)> 6 m〜2),在图像中检测到70%。空间分类表明,景观元素掩盖了9%至55%的人口,这些景观元素会降低图像的对比度。这项研究表明,2003年测绘的人口中有97%在1965年就已经存在,树木生长缓慢且比以前设想的更老。在图像中检测到花粉树木,并且由此导致的CA降低可能会导致变化分析中的误解。 CORONA图像为生态信息提供了时空维度,而其他数据源无法以可比的成本,覆盖范围,分辨率或可访问性来提供这些信息。

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