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昆虫遥感的最新进展。

Recent advances in the remote sensing of insects.

机构信息

Environment and Sustainability Institute, University of Exeter Penryn Campus, Penryn, Cornwall, TR10 9FE, U.K.

Centre for Geography and Environmental Science, University of Exeter Penryn Campus, Penryn, Cornwall, TR10 9FE, U.K.

出版信息

Biol Rev Camb Philos Soc. 2022 Feb;97(1):343-360. doi: 10.1111/brv.12802. Epub 2021 Oct 5.

Abstract

Remote sensing has revolutionised many aspects of ecological research, enabling spatiotemporal data to be collected in an efficient and highly automated manner. The last two decades have seen phenomenal growth in capabilities for high-resolution remote sensing that increasingly offers opportunities to study small, but ecologically important organisms, such as insects. Here we review current applications for using remote sensing within entomological research, highlighting the emerging opportunities that now arise through advances in spatial, temporal and spectral resolution. Remote sensing can be used to map environmental variables, such as habitat, microclimate and light pollution, capturing data on topography, vegetation structure and composition, and luminosity at spatial scales appropriate to insects. Such data can also be used to detect insects indirectly from the influences that they have on the environment, such as feeding damage or nest structures, whilst opportunities for directly detecting insects are also increasingly available. Entomological radar and light detection and ranging (LiDAR), for example, are transforming our understanding of aerial insect abundance and movement ecology, whilst ultra-high spatial resolution drone imagery presents tantalising new opportunities for direct observation. Remote sensing is rapidly developing into a powerful toolkit for entomologists, that we envisage will soon become an integral part of insect science.

摘要

遥感技术已经彻底改变了生态研究的许多方面,使人们能够以高效和高度自动化的方式收集时空数据。在过去的二十年中,高分辨率遥感的能力取得了惊人的发展,这为研究小型但具有生态重要性的生物(如昆虫)提供了越来越多的机会。在这里,我们回顾了遥感在昆虫学研究中的当前应用,强调了通过空间、时间和光谱分辨率的提高而出现的新机遇。遥感可用于绘制环境变量(如栖息地、小气候和光污染)图,获取有关地形、植被结构和组成以及亮度的空间尺度数据。这些数据还可用于从昆虫对环境的影响(如觅食损害或巢结构)间接探测昆虫,而直接探测昆虫的机会也越来越多。例如,昆虫雷达和激光雷达(LiDAR)正在改变我们对空中昆虫数量和运动生态学的理解,而超高空间分辨率的无人机图像则为直接观察提供了诱人的新机会。遥感正在迅速发展成为昆虫学家的强大工具包,我们预计它将很快成为昆虫科学不可或缺的一部分。

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