On the synergistic use of SAR and optical imagery to monitor cyanobacteria blooms: the Curonian Lagoon case study

Author:

Adamo Maria1,Matta Erica2,Bresciani Mariano2,De Carolis Giacomo2,Vaiciute Diana3,Giardino Claudia2,Pasquariello Guido1

Affiliation:

1. Institute of Intelligent Systems for Automation, CNR-ISSIA, Via G. Amendola 122/D-O, 70126 Bari, Italy

2. Optical Remote Sensing Group, CNR-IREA, Via Bassini 15, 20133 Milano, Italy

3. Coastal Research and Planning Institute, University of Klaipeda, H. Manto 84, LT 92294, Lithuania

Publisher

Informa UK Limited

Subject

Applied Mathematics,Atmospheric Science,Computers in Earth Sciences,General Environmental Science

Reference44 articles.

1. Backer L.C., Carmichael W., Kirkpatrick B., Williams C., Irvin M., Zhou Y., Johnson T.B., Nierenberg K., Hill V.R., Kieszak S.M., Cheng, Y.S. (2008)—Recreational exposure to microcystins during a Microcystis aeruginosa bloom in a small lake. In: Mayer AMS (ed.). Marine Drugs, 6 (2): 389–406.

2. Assessing remotely sensed chlorophyll-a for the implementation of the Water Framework Directive in European perialpine lakes

3. Retrospective analysis of spatial and temporal variability of chlorophyll-a in the Curonian Lagoon

4. Analysis of within- and between-day chlorophyll-a dynamics in Mantua Superior Lake, with a continuous spectroradiometric measurement

5. Chorus I. (2001)—Cyanotoxins: occurrence, causes, consequences. Springer, Berlin: pp. 375.

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