Sun-induced canopy chlorophyll fluorescence in both the red (FR) and far-red (FFR) regions was estimated across a range of temporal scales and a range of species from different plant functional types using high resolution radiance spectra collected on the ground. Field measurements were collected with a state-of-the-art spectrometer setup and standardized methodology. Results showed that different plant species were characterized by different fluorescence magnitude. In general, the highest fluorescence emissions were measured in crops followed by broadleaf and then needleleaf species. Red fluorescence values were generally lower than those measured in the far-red region due to the reabsorption of FR by photosynthetic pigments within the can...
International audienceLeaf fluorescence can be used to track plant development and stress, and is co...
A novel approach to characterize the physiological conditions of plants from hyperspectral remote se...
Sun-induced chlorophyll fluorescence (SIF) has been used to track vegetation photosynthetic activity...
Sun-induced canopy chlorophyll fluorescence in both the red (FR) and far-red (FFR) regions was estim...
International audienceWe investigated the impact of canopy structure on chlorophyll fluorescence pro...
Retrieval of Sun-Induced Chlorophyll Fluorescence (F) spectrum is one of the challenging perspective...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
<p>Remote Sensing of Sun-Induced Chlorophyll Fluorescence is a research field of growing interest wi...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
Imaging and non-imaging spectroscopy employed in the field and from aircraft is frequently used to a...
Progress in imaging spectroscopy technology and data processing can enable derivation of the complet...
Recent advances in satellite observations of solar-induced chlorophyll fluorescence (SIF) provide a ...
Imaging and non-imaging spectroscopy employed in the field and from aircraft is frequently used to a...
Remotely sensed sun-induced chlorophyll fluorescence (SIF) has been used as an indicator of global t...
International audienceLeaf fluorescence can be used to track plant development and stress, and is co...
A novel approach to characterize the physiological conditions of plants from hyperspectral remote se...
Sun-induced chlorophyll fluorescence (SIF) has been used to track vegetation photosynthetic activity...
Sun-induced canopy chlorophyll fluorescence in both the red (FR) and far-red (FFR) regions was estim...
International audienceWe investigated the impact of canopy structure on chlorophyll fluorescence pro...
Retrieval of Sun-Induced Chlorophyll Fluorescence (F) spectrum is one of the challenging perspective...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
<p>Remote Sensing of Sun-Induced Chlorophyll Fluorescence is a research field of growing interest wi...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
Imaging and non-imaging spectroscopy employed in the field and from aircraft is frequently used to a...
Progress in imaging spectroscopy technology and data processing can enable derivation of the complet...
Recent advances in satellite observations of solar-induced chlorophyll fluorescence (SIF) provide a ...
Imaging and non-imaging spectroscopy employed in the field and from aircraft is frequently used to a...
Remotely sensed sun-induced chlorophyll fluorescence (SIF) has been used as an indicator of global t...
International audienceLeaf fluorescence can be used to track plant development and stress, and is co...
A novel approach to characterize the physiological conditions of plants from hyperspectral remote se...
Sun-induced chlorophyll fluorescence (SIF) has been used to track vegetation photosynthetic activity...