We analyzed 27 established and new simple and therefore perhaps portable satellite phycocyanin pigment reflectance algorithms for estimating cyanobacterial values in a temperate 8.9 km2 reservoir in southwest Ohio using coincident hyperspectral aircraft imagery and dense coincident water surface observations collected from 44 sites within 1 h of image acquisition. The algorithms were adapted to real Compact Airborne Spectrographic Imager (CASI), synthetic WorldView-2, Sentinel-2, Landsat-8, MODIS and Sentinel-3/MERIS/OLCI imagery resulting in 184 variants and corresponding image products. Image products were compared to the cyanobacterial coincident surface observation measurements to identify groups of promising algorithms for operational ...
Hyperspectral imagery (HSI) provides substantial information on optical features of water bodies tha...
Extensive monitoring of cyanobacterial blooms in lakes and reservoirs can provide important protecti...
The remote sensing of algal pigments is essential for understanding the temporal and spatial distrib...
We evaluated the accuracy and sensitivity of six previously published reflectance based algorithms t...
An extensive field campaign was carried out for the validation of a previously published reflectance...
Most remote sensing algorithms for phytoplankton in inland waters aim at the retrieval of the pigmen...
A novel algorithm is developed and validated to estimate phycocyanin (PC) pigment concentrations of ...
This study introduces a semi-empirical algorithm to estimate the extent of the phycocyanin (PC) conc...
The growth of mass populations of toxin-producing cyanobacteria is a serious concern for the ecologi...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
Algorithms were developed from LANDSAT 7 ETM+ data for the July 1, 2000 overpass and LANDSAT 5 Thema...
Cyanobacterial harmful algal blooms are an increasing threat to coastal and inland waters. These blo...
Retrieval of the phycocyanin concentration (PC), a characteristic pigment of, and proxy for, cyanoba...
Indiana University-Purdue University Indianapolis (IUPUI)Water is an essential resource for life on ...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
Hyperspectral imagery (HSI) provides substantial information on optical features of water bodies tha...
Extensive monitoring of cyanobacterial blooms in lakes and reservoirs can provide important protecti...
The remote sensing of algal pigments is essential for understanding the temporal and spatial distrib...
We evaluated the accuracy and sensitivity of six previously published reflectance based algorithms t...
An extensive field campaign was carried out for the validation of a previously published reflectance...
Most remote sensing algorithms for phytoplankton in inland waters aim at the retrieval of the pigmen...
A novel algorithm is developed and validated to estimate phycocyanin (PC) pigment concentrations of ...
This study introduces a semi-empirical algorithm to estimate the extent of the phycocyanin (PC) conc...
The growth of mass populations of toxin-producing cyanobacteria is a serious concern for the ecologi...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
Algorithms were developed from LANDSAT 7 ETM+ data for the July 1, 2000 overpass and LANDSAT 5 Thema...
Cyanobacterial harmful algal blooms are an increasing threat to coastal and inland waters. These blo...
Retrieval of the phycocyanin concentration (PC), a characteristic pigment of, and proxy for, cyanoba...
Indiana University-Purdue University Indianapolis (IUPUI)Water is an essential resource for life on ...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
Hyperspectral imagery (HSI) provides substantial information on optical features of water bodies tha...
Extensive monitoring of cyanobacterial blooms in lakes and reservoirs can provide important protecti...
The remote sensing of algal pigments is essential for understanding the temporal and spatial distrib...