Algal Accessory Pigment Detection Using AVIRIS Image-Derived Spectral Radiance Data
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Summary
Results are presented on detection of algal accessory pigments using AVIRIS data, which extends the use of remote sensing for the study of aquatic ecosystems by allowing detection of taxonomically significant pigment signatures which yield information about the type of algae present.
- Type
- article
- Published
- 1996-01-01
- Cited by
- 4
- References
- 26
- OpenAlex
- https://openalex.org/W69874236
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:54043613
Keywords
Remote sensing, Radiance, Algae, Environmental science, Aquatic ecosystem
References
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- Dominance of Cryptophyceae during the phytoplankton spring bloom in the central North Sea detected by HPLC analysis of pigments
- The rapid determination of algal chlorophyll and carotenoid pigments and their breakdown products in natural waters by reverse-phase high-performance liquid chromatography
- Estimating chlorophyll content and bathymetry of Lake Tahoe using AVIRIS data
- A remote‐sensing reflectance model of a red‐tide dinoflagellate off west Florida1
- Patchiness, collapse and succession of a cyanobacterial bloom evaluated by synoptic sampling and remote sensing
- Estimation of Algal Succession in Lake Water Using HPLC Analysis of Pigments
- Discrimination of poorly exposed lithologies in imaging spectrometer data
- Determination of chlorophyll a of inland waters on the basis of spectral reflectance
- Microalgal Pigment Assessments Using High-Performance Liquid Chromatography: A Synopsis of Organismal and Ecological Applications
- A quantitative method based on HPLC-aided pigment analysis to monitor structure and dynamics of the phytoplankton assemblage. A study from Lake Meerfelder Maar (Eifel, Germany)
- Analysis of suspended solids in water using remotely sensed high resolution derivative spectra
Cited by
- Advantages of the Boresight Effect in Hyperspectral Data Analysis
- Calibration of Landsat thermal data and application to water resource studies
- Hyperspectral imaging sensors and assessment of oceanic littoral zone phytoplankton dynamics
- IDENTIFICATION AND CLASSIFICATION OF MIXED PHYTOPLANKTON ASSEMBLAGES USING AVIRIS IMAGE-DERIVED SPECTRA
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