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DOI10.1080/01431161.2018.1528020
Landsat 8 OLI satellite data for mapping of the Posidonia oceanica and benthic habitats of coastal ecosystems
Borfecchia, Flavio1; Consalvi, Natalizia2; Micheli, Carla3; Carli, Filippo M.2; De Martiis, Selvaggia Cognetti2; Gnisci, Valentina2; Piermattei, Viviana2; Belmonte, Alessandro3; De Cecco, Luigi1; Bonamano, Simone2; Marcelli, Marco2
发表日期2019
ISSN0143-1161
EISSN1366-5901
卷号40期号:4页码:1548-1575
英文摘要

The benthic seabeds and seagrass ecosystems, in particular the vulnerable Posidonia oceanica (PO), are increasingly threatened by climate change and other anthropogenic pressures. Along the 8000 km coastline of Italy, they are often poorly mapped and monitored to properly evaluate their health status. Thus to support these monitoring needs, the improved capabilities of the Landsat 8 Operational Land Imager (OLI) Earth Observation (EO) satellite system were tested for PO mapping by coupling its atmospherically corrected multispectral data with near-synchronous sea truth information. Two different approaches for the necessary atmospheric correction were exploited focusing on the Aerosol Optical Depth (AOD) and adjacency noise effects, which typically occur at land-sea interfaces. The general achievements demonstrated the effectiveness of High Resolution (HR) spectral responses captured by OLI sensor, for monitoring seagrass and sea beds in the optically complex Tyrrhenian shallow waters, with performance level dependent on the type of applied atmospheric pre-processing. The distribution of the PO leaf area index (LAI) on different substrates has been most effectively modelled using on purpose developed spectral indices. They were based on the coastal and blue-green OLI bands, atmospherically corrected using a recently introduced method for AOD retrieval, based on the Short Wave Infrared (SWIR) reflectance. The alternative correction method including a less effective AOD assessment but the removal of adjacency effects has proven its efficacy for improving the thematic discriminability of the seabed types characterized by different PO cover-substrate combinations.


WOS研究方向Remote Sensing ; Imaging Science & Photographic Technology
来源期刊INTERNATIONAL JOURNAL OF REMOTE SENSING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/93553
作者单位1.ENEA, SSPT PROTER OAC Sustainabil Prod & Terr Syst Dept, Protect & Valorizat Terr & Nat Heritage Div,Itali, Lab Earth & Climate Observat & Anal,Res Ctr Casac, Rome, Italy;
2.Univ Tuscia, Lab Expt Oceanol & Marine Ecol, DEB, Civitavecchia, RM, Italy;
3.ENEA, DTE BBC BBE Dept Energet Technol, Lab Biomass & Biotechnol Energy,Energy & Sustaina, Bioenergy Div,Res Ctr Casaccia,Italian Natl Agcy, Rome, Italy
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GB/T 7714
Borfecchia, Flavio,Consalvi, Natalizia,Micheli, Carla,et al. Landsat 8 OLI satellite data for mapping of the Posidonia oceanica and benthic habitats of coastal ecosystems[J],2019,40(4):1548-1575.
APA Borfecchia, Flavio.,Consalvi, Natalizia.,Micheli, Carla.,Carli, Filippo M..,De Martiis, Selvaggia Cognetti.,...&Marcelli, Marco.(2019).Landsat 8 OLI satellite data for mapping of the Posidonia oceanica and benthic habitats of coastal ecosystems.INTERNATIONAL JOURNAL OF REMOTE SENSING,40(4),1548-1575.
MLA Borfecchia, Flavio,et al."Landsat 8 OLI satellite data for mapping of the Posidonia oceanica and benthic habitats of coastal ecosystems".INTERNATIONAL JOURNAL OF REMOTE SENSING 40.4(2019):1548-1575.
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