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Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements

The aim of this study is to test a series of methods relying on hyperspectral measurements to characterize phytoplankton in clear lake waters. The phytoplankton temporal evolutions were analyzed exploiting remote sensed indices and metrics linked to the amount of light reaching the target (E(PAR)),...

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Autores principales: Cesana, Ilaria, Bresciani, Mariano, Cogliati, Sergio, Giardino, Claudia, Gupana, Remika, Manca, Dario, Santabarbara, Stefano, Pinardi, Monica, Austoni, Martina, Lami, Andrea, Colombo, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347748/
https://www.ncbi.nlm.nih.gov/pubmed/34372309
http://dx.doi.org/10.3390/s21155072
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author Cesana, Ilaria
Bresciani, Mariano
Cogliati, Sergio
Giardino, Claudia
Gupana, Remika
Manca, Dario
Santabarbara, Stefano
Pinardi, Monica
Austoni, Martina
Lami, Andrea
Colombo, Roberto
author_facet Cesana, Ilaria
Bresciani, Mariano
Cogliati, Sergio
Giardino, Claudia
Gupana, Remika
Manca, Dario
Santabarbara, Stefano
Pinardi, Monica
Austoni, Martina
Lami, Andrea
Colombo, Roberto
author_sort Cesana, Ilaria
collection PubMed
description The aim of this study is to test a series of methods relying on hyperspectral measurements to characterize phytoplankton in clear lake waters. The phytoplankton temporal evolutions were analyzed exploiting remote sensed indices and metrics linked to the amount of light reaching the target (E(PAR)), the chlorophyll-a concentration ([Chl-a](OC4)) and the fluorescence emission proxy. The latter one evaluated by an adapted version of the Fluorescence Line Height algorithm (F(FLH)). A peculiar trend was observed around the solar noon during the clear sky days. It is characterized by a drop of the F(FLH) metric and the [Chl-a](OC4) index. In addition to remote sensed parameters, water samples were also collected and analyzed to characterize the water body and to evaluate the in-situ fluorescence (F(F)) and absorbed light (F(A)). The relations between the remote sensed quantities and the in-situ values were employed to develop and test several phytoplankton primary production (PP) models. Promising results were achieved replacing the F(A) by the E(PAR) or F(FLH) in the equation evaluating a PP proxy (R(2) > 0.65). This study represents a preliminary outcome supporting the PP monitoring in inland waters by means of remote sensing-based indices and fluorescence metrics.
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spelling pubmed-83477482021-08-08 Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements Cesana, Ilaria Bresciani, Mariano Cogliati, Sergio Giardino, Claudia Gupana, Remika Manca, Dario Santabarbara, Stefano Pinardi, Monica Austoni, Martina Lami, Andrea Colombo, Roberto Sensors (Basel) Article The aim of this study is to test a series of methods relying on hyperspectral measurements to characterize phytoplankton in clear lake waters. The phytoplankton temporal evolutions were analyzed exploiting remote sensed indices and metrics linked to the amount of light reaching the target (E(PAR)), the chlorophyll-a concentration ([Chl-a](OC4)) and the fluorescence emission proxy. The latter one evaluated by an adapted version of the Fluorescence Line Height algorithm (F(FLH)). A peculiar trend was observed around the solar noon during the clear sky days. It is characterized by a drop of the F(FLH) metric and the [Chl-a](OC4) index. In addition to remote sensed parameters, water samples were also collected and analyzed to characterize the water body and to evaluate the in-situ fluorescence (F(F)) and absorbed light (F(A)). The relations between the remote sensed quantities and the in-situ values were employed to develop and test several phytoplankton primary production (PP) models. Promising results were achieved replacing the F(A) by the E(PAR) or F(FLH) in the equation evaluating a PP proxy (R(2) > 0.65). This study represents a preliminary outcome supporting the PP monitoring in inland waters by means of remote sensing-based indices and fluorescence metrics. MDPI 2021-07-27 /pmc/articles/PMC8347748/ /pubmed/34372309 http://dx.doi.org/10.3390/s21155072 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cesana, Ilaria
Bresciani, Mariano
Cogliati, Sergio
Giardino, Claudia
Gupana, Remika
Manca, Dario
Santabarbara, Stefano
Pinardi, Monica
Austoni, Martina
Lami, Andrea
Colombo, Roberto
Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title_full Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title_fullStr Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title_full_unstemmed Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title_short Preliminary Investigation on Phytoplankton Dynamics and Primary Production Models in an Oligotrophic Lake from Remote Sensing Measurements
title_sort preliminary investigation on phytoplankton dynamics and primary production models in an oligotrophic lake from remote sensing measurements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347748/
https://www.ncbi.nlm.nih.gov/pubmed/34372309
http://dx.doi.org/10.3390/s21155072
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