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Remote sensing and the future of landscape ecology

机译:遥感与景观生态学的未来

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Landscape ecology focuses on the analysis of spatial pattern and its relationship to ecological processes. As a scientific discipline, landscape ecology has grown rapidly in recent years, supported by developments in GIS and spatial analysis techniques. Although remote sensing data are widely employed in landscape ecology research, their current and potential roles have not been evaluated critically. To provide an overview of current practice, 438 research papers published in the journal Landscape Ecology for the years 2004-2008 were examined for information about use of remote sensing. Results indicated that only 36% of studies explicitly mentioned remote sensing. Of those that did so, aerial photographs and Landsat satellite sensor images were most commonly used, accounting for 46% and 42% of studies, respectively. The predominant application of remote sensing data across these studies was for thematic mapping purposes. This suggests that landscape ecologists have been relatively slow to recognize the potential value of recent developments in remote sensing technologies and methods. The review also provided evidence of a frequent lack of key detail in studies recently published in Landscape Ecology , with 75% failing to provide any assessment of uncertainty or error relating to image classification and mapping. It is suggested that the role of remote sensing in landscape ecology might be strengthened by closer collaboration between researchers in the two disciplines, by greater integration of diverse remote sensing data with ecological data, and by increased recognition of the value of remote sensing beyond land-cover mapping and pattern description. This is illustrated by case studies drawn from Latin America (focusing on forest loss and fragmentation) and the UK (focusing on habitat quality for woodland birds). Such approaches might improve the analytical and theoretical rigour of landscape ecology, and be applied usefully to issues of outstanding societal interest, such as the impacts of environmental change on biodiversity and ecosystem services.
机译:景观生态学着重分析空间格局及其与生态过程的关系。作为一门科学学科,景观生态学近年来在GIS和空间分析技术的发展支持下迅速发展。尽管遥感数据已广泛用于景观生态学研究中,但其当前和潜在作用尚未得到严格评估。为了提供当前实践的概述,对2004-2008年发表在《景观生态学》杂志上的438篇研究论文进行了研究,以了解有关遥感使用的信息。结果表明,只有36%的研究明确提到了遥感。在这样做的那些中,最常用的是航空照片和Landsat卫星传感器图像,分别占研究的46%和42%。在这些研究中,遥感数据的主要应用是出于专题制图的目的。这表明景观生态学家相对较慢地认识到遥感技术和方法的最新发展的潜在价值。该评论还提供了证据,证明最近发表在《景观生态学》上的研究中经常缺乏关键细节,其中有75%的人未能提供与图像分类和制图有关的不确定性或错误的任何评估。建议通过两个学科的研究人员之间更紧密的合作,通过将各种遥感数据与生态数据更好地整合以及对陆地以外的遥感价值的更多认识来加强遥感在景观生态学中的作用。封面映射和模式描述。拉丁美洲(侧重于森林的丧失和破碎)和英国(侧重于林地鸟类的栖息地质量)的案例研究表明了这一点。这种方法可能会改善景观生态学的分析和理论严谨性,并可以有效地用于社会关注度高的问题,例如环境变化对生物多样性和生态系统服务的影响。

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