Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field

LEDFLEX is a micro-lidar dedicated to the measurement of vegetation fluorescence. The light source consists of 4 blue Light-Emitting Diodes (LED) to illuminate part of the canopy in order to average the spatial variability of small crops. The fluorescence emitted in response to a 5-μs width pulse is...

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Autores principales: Moya, Ismael, Quiroz, Roberto A, y 4 autores más
Formato: Artículo
Lenguaje:Inglés
Publicado: Photosynthesis Research 2022
Materias:
Acceso en línea:https://repositorio.catie.ac.cr/handle/11554/12198
id RepoCATIE12198
record_format dspace
spelling RepoCATIE121982022-12-17T17:42:18Z Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field Moya, Ismael Quiroz, Roberto A y 4 autores más FLUORESCENCIA FLUORESCENCE FESTUCA ESTRES DE SEQUIA DROUGHT STRESS µ-LIDAR STRESS DETECTION Sede Central LEDFLEX is a micro-lidar dedicated to the measurement of vegetation fluorescence. The light source consists of 4 blue Light-Emitting Diodes (LED) to illuminate part of the canopy in order to average the spatial variability of small crops. The fluorescence emitted in response to a 5-μs width pulse is separated from the ambient light through a synchronized detection. Both the reflectance and the fluorescence of the target are acquired simultaneously in exactly the same field of view, as well as the photosynthetic active radiation and air temperature. The footprint is about 1 m2 at a distance of 8 m. By increasing the number of LEDs longer ranges can be reached. The micro-lidar has been successfully applied under full sunlight conditions to establish the signature of water stress on pea (Pisum Sativum) canopy. Under well-watered conditions the diurnal cycle presents an M shape with a minimum (Fmin) at noon which is Fmin > Fo. After several days withholding watering, Fs decreases and Fmin < Fo. The same patterns were observed on mint (Menta Spicata) and sweet potatoes (Ipomoea batatas) canopies. Active fluorescence measurements with LEDFLEX produced robust fluorescence yield data as a result of the constancy of the excitation intensity and its geometry fixity. Passive methods based on Sun-Induced chlorophyll Fluorescence (SIF) that uses high-resolution spectrometers generate only flux data and are dependent on both the 3D structure of vegetation and variable irradiance conditions along the day. Parallel measurements with LEDFLEX should greatly improve the interpretation of SIF changes. 2022-12-15T16:34:35Z 2022-12-15T16:34:35Z 2022 Artículo https://repositorio.catie.ac.cr/handle/11554/12198 openAccess en Photosynthesis Research https://doi.org/10.1007/s11120-019-00642-9 17 páginas application/pdf Photosynthesis Research
institution Centro Agronómico Tropical de Investigación y Enseñanza
collection Repositorio CATIE
language Inglés
topic FLUORESCENCIA
FLUORESCENCE
FESTUCA
ESTRES DE SEQUIA
DROUGHT STRESS
µ-LIDAR
STRESS DETECTION
Sede Central
spellingShingle FLUORESCENCIA
FLUORESCENCE
FESTUCA
ESTRES DE SEQUIA
DROUGHT STRESS
µ-LIDAR
STRESS DETECTION
Sede Central
Moya, Ismael
Quiroz, Roberto A
y 4 autores más
Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
description LEDFLEX is a micro-lidar dedicated to the measurement of vegetation fluorescence. The light source consists of 4 blue Light-Emitting Diodes (LED) to illuminate part of the canopy in order to average the spatial variability of small crops. The fluorescence emitted in response to a 5-μs width pulse is separated from the ambient light through a synchronized detection. Both the reflectance and the fluorescence of the target are acquired simultaneously in exactly the same field of view, as well as the photosynthetic active radiation and air temperature. The footprint is about 1 m2 at a distance of 8 m. By increasing the number of LEDs longer ranges can be reached. The micro-lidar has been successfully applied under full sunlight conditions to establish the signature of water stress on pea (Pisum Sativum) canopy. Under well-watered conditions the diurnal cycle presents an M shape with a minimum (Fmin) at noon which is Fmin > Fo. After several days withholding watering, Fs decreases and Fmin < Fo. The same patterns were observed on mint (Menta Spicata) and sweet potatoes (Ipomoea batatas) canopies. Active fluorescence measurements with LEDFLEX produced robust fluorescence yield data as a result of the constancy of the excitation intensity and its geometry fixity. Passive methods based on Sun-Induced chlorophyll Fluorescence (SIF) that uses high-resolution spectrometers generate only flux data and are dependent on both the 3D structure of vegetation and variable irradiance conditions along the day. Parallel measurements with LEDFLEX should greatly improve the interpretation of SIF changes.
format Artículo
author Moya, Ismael
Quiroz, Roberto A
y 4 autores más
author_facet Moya, Ismael
Quiroz, Roberto A
y 4 autores más
author_sort Moya, Ismael
title Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
title_short Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
title_full Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
title_fullStr Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
title_full_unstemmed Active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
title_sort active in situ and passive airborne fluorescence measurements for water stress detection on a fescue field
publisher Photosynthesis Research
publishDate 2022
url https://repositorio.catie.ac.cr/handle/11554/12198
work_keys_str_mv AT moyaismael activeinsituandpassiveairbornefluorescencemeasurementsforwaterstressdetectiononafescuefield
AT quirozrobertoa activeinsituandpassiveairbornefluorescencemeasurementsforwaterstressdetectiononafescuefield
AT y4autoresmas activeinsituandpassiveairbornefluorescencemeasurementsforwaterstressdetectiononafescuefield
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