A measurement campaign to assess the feasibility of remote sensing of sunlight-induced chlorophyll fluorescence (ChlF) from a coniferous canopy was conducted in a boreal forest study site (Finland). A Passive Multi-wavelength Fluorescence Detector (PMFD) sensor, developed in the LURE laboratory, was used to obtain simultaneous measurements of ChlF in the oxygen absorption bands, at 687 and 760 nm, and a reflectance index, the PRI (Physiological Reflectance Index), for a month during spring recovery. When these data were compared with active fluorescence measurements performed on needles they revealed the same trend. During sunny days fluorescence and reflectance signals were found to be strongly influenced by shadows associated with the can...
Leaf chlorophyll content declines in response to environmental stressors and during natural senescen...
The spectral properties of plant leaves relate to the state of their photosynthetic apparatus and th...
During the growing season, the photosynthesis and growth of boreal forests are regulated by physiolo...
Tree species in the boreal forest cycle between periods of active growth and dormancy alter their ph...
Chlorophyll a fluorescence (ChlF) is closely related to photosynthesis and can be measured remotely ...
Boreal forests propose a specific challenge for remote-sensing of phenology and photosynthetic capac...
The relationship between a physiological index called the photochemical reflectance index (PRI) and ...
Chlorophyll fluorescence can serve as a proxy of photosynthesis in boreal forests. When sustained no...
The relationship between a physiological index called the photochemical reflectance index (PRI) and ...
The photochemical reflectance index (PRI) is calculated from vegetation narrowband reflectance in tw...
Solar induced chlorophyll fluorescence has been shown to be increasingly an useful proxy for the est...
The photochemical reflectance index (PRI) is calculated from vegetation narrowband reflectance in tw...
Using a helicopter-mounted portable spectroradiometer and continuous eddy covariance data we were ab...
Leaf chlorophyll content declines in response to environmental stressors and during natural senescen...
The spectral properties of plant leaves relate to the state of their photosynthetic apparatus and th...
During the growing season, the photosynthesis and growth of boreal forests are regulated by physiolo...
Tree species in the boreal forest cycle between periods of active growth and dormancy alter their ph...
Chlorophyll a fluorescence (ChlF) is closely related to photosynthesis and can be measured remotely ...
Boreal forests propose a specific challenge for remote-sensing of phenology and photosynthetic capac...
The relationship between a physiological index called the photochemical reflectance index (PRI) and ...
Chlorophyll fluorescence can serve as a proxy of photosynthesis in boreal forests. When sustained no...
The relationship between a physiological index called the photochemical reflectance index (PRI) and ...
The photochemical reflectance index (PRI) is calculated from vegetation narrowband reflectance in tw...
Solar induced chlorophyll fluorescence has been shown to be increasingly an useful proxy for the est...
The photochemical reflectance index (PRI) is calculated from vegetation narrowband reflectance in tw...
Using a helicopter-mounted portable spectroradiometer and continuous eddy covariance data we were ab...
Leaf chlorophyll content declines in response to environmental stressors and during natural senescen...
The spectral properties of plant leaves relate to the state of their photosynthetic apparatus and th...
During the growing season, the photosynthesis and growth of boreal forests are regulated by physiolo...