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Effects of Epiphytes and Depth on Seagrass Spectral Profiles

Case Study of Gulf St. Vincent, South Australia

Dados Bibliográficos

ID15512949
AutoresCharnsmorn Hwang (National Cheng Kung University, autor correspondente), Chih‐Hua Chang (0000-0002-9681-8522, National Cheng Kung University, autor correspondente), Michael Burch (0000-0001-9762-7042, The University of Adelaide), Michael D Burch (The University of Adelaide), Milena Fernandes (0000-0002-6024-0765, Flinders University), Tim Kildea (South Australian Water Corporation)
Ano2019
Volume16
Fascículo15
Páginas2701-2701
Data de publicação2019-07-29
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoInternational Journal of Environmental Research and Public Health (JOURNAL)
Identificadores do periódicoISSN: 1661-7827 • E-ISSN: 1660-4601
EditoraMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph16152701
PMID31362358
OpenAlexW2964843877
IdiomaEN
Referências citadas51

Seagrasses are a crucial indicator species of coastal marine ecosystems that provide substratum, shelter, and food for epiphytic algae, invertebrates, and fishes. More accurate mapping of seagrasses is essential for their survival as a long-lasting natural resource. Before reflectance spectra could properly be used as remote sensing endmembers, factors that may obscure the detection of reflectance signals must be assessed. The objectives in this study are to determine the influence of (1) epiphytes, (2) water depth, and (3) seagrass genus on the detection of reflectance spectral signals. The results show that epiphytes significantly dampen bottom-type reflectance throughout most of the visible light spectrum, excluding 670-679 nm; the depth does influence reflectance, with the detection of deeper seagrasses being easier, and as the depth increases, only Heterozostera increase in the exact "red edge" wavelength at which there is a rapid change in the near-infrared (NIR) spectrum. These findings helped improve the detection of seagrass endmembers during remote sensing, thereby helping protect the natural resource of seagrasses

Algae · Biology · Ecosystem · Epiphyte · Invertebrate · Reflectivity · Remote sensing · Seagrass · Spectral signature · Coral and Marine Ecosystems Studies · Environmental Science · Marine and coastal plant biology · Marine Biology and Ecology Research · Ecology · Geology · Oceanography

  • Accelerating loss of seagrasses across the globe threatens coastal ecosystems

    Open Access•Michelle Waycott, Carlos M Duarte et al.•Proceedings of the National…•2009

  • The value of estuarine and coastal ecosystem services

    Open Access•E B Barbier, Sally D Hacker et al.•Ecological Monographs•2011

Velocidade de citaçãohistorical
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