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Progress in the remote sensing of C3 and C4 grass species aboveground biomass over time and space

机译:地上生物量对C3和C4草种的时空遥感研究进展

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The remote sensing of grass aboveground biomass (AGB) has gained considerable attention, with substantial research being conducted in the past decades. Of significant importance is their photosynthetic pathways (C3 and C4), which epitomizes a fundamental eco-physiological distinction of grasses functional types. With advances in technology and the availability of remotely sensed data at different spatial, spectral, radiometric and temporal resolutions, coupled with the need for detailed information on vegetation condition, the monitoring of C3 and C4 grasses AGB has received renewed attention, especially in the light of global climate change, biodiversity and, most importantly, food security. This paper provides a detailed survey on the progress of remote sensing application in determining C3 and C4 grass species AGB. Importantly, the importance of species functional type is highlighted in conjunction with the availability and applicability of different remote sensing datasets, with refined resolutions, which provide an opportunity to monitor C3 and C4 grasses AGB. While some progress has been made, this review has revealed the need for further remote sensing studies to model the seasonal (cyclical) variability, as well as long-term AGB changes in C3 and C4 grasses, in the face of climate change and food security. Moreover, the findings of this study have shown the significance of shifting towards the application of advanced statistical models, to further improve C3 and C4 grasses AGB estimation accuracy. (C) 2016 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:在过去的几十年中,进行了大量的研究,从而对草地上的生物量(AGB)进行了遥感。它们的光合作用途径(C3和C4)是非常重要的,它代表了草类功能类型的基本生态生理学区别。随着技术的进步和不同空间,光谱,辐射度和时间分辨率下遥感数据的可获得性以及对植被状况详细信息的需求,对C3和C4草AGB的监测受到了新的关注,尤其是在光照方面全球气候变化,生物多样性,最重要的是粮食安全。本文详细介绍了遥感技术在确定C3和C4草种AGB中的应用进展。重要的是,强调了物种功能类型的重要性,并结合了不同遥感数据集的可用性和适用性,以及经过改进的分辨率,这为监测C3和C4草AGB提供了机会。尽管已经取得了一些进展,但这项审查表明,面对气候变化和粮食安全,需要进一步的遥感研究来模拟季节性(周期性)变异以及C3和C4草的长期AGB变化。此外,这项研究的结果表明了向高级统计模型的应用转移的重要性,以进一步提高C3和C4草的AGB估算准确性。 (C)2016国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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