A theoretical model has been developed to describe an experimentally observed spectral shift in the fluorescence emission from phytoplankton as a result of the internal reabsorption of that emission. This model accounts for both the absorption of the primary excitation and the modification of the fluorescence through the reabsorption of the emitted light by the chloroplast and by the surrounding medium. Comparisons are made between the results of the theoretical model and data derived from experiments using a number of different phytoplankton species, each adapted to varying light conditions. The details of the model are discussed, and the consequences of its interpretation on the spectral distribution of the fluorescence emission from phyt...
Phytoplankton live in a dynamic environment and are capable of changing and adapting to varying leve...
We report the first radiative transfer model that is able to simulate phytoplankton fluorescence wit...
The photosynthesis-irradiance curve (or PI-curve, for short) in phytoplankton is highly plastic, in ...
Methods are described for the measurement of spectral absorption coefficients, fluorescence excitati...
An analytic model (AM) was developed to solve the radiative transfer equation for the natural fluore...
We report the first radiative transfer model that is able to simulate phytoplankton fluorescence wit...
Phytoplankton play a vital role as primary producers in aquatic ecosystems and there is interest amo...
Fluorometric determination of the chlorophyll (Chl) content of cyanobacteria is impeded by the uniqu...
In fluorometric phytoplankton analysis, the detection of red cyanobacteria is hampered by acclimatio...
AbstractThe concentration of phytoplankton is often used to assess the ecological status of water bo...
given frequency, and that of absorption, k(v), at the same frequency, is applied, in its modified fo...
AbstractFluorometric determination of the chlorophyll (Chl) content of cyanobacteria is impeded by t...
The relationship between flow cytometric fluorescence signals and photosynthetic pigments was invest...
Copyrighted by American Geophysical Union.Optical oceanography models of attenuation and scattering ...
Dissolved and suspended materials in the ocean modify the in-water light field by absorbing and scat...
Phytoplankton live in a dynamic environment and are capable of changing and adapting to varying leve...
We report the first radiative transfer model that is able to simulate phytoplankton fluorescence wit...
The photosynthesis-irradiance curve (or PI-curve, for short) in phytoplankton is highly plastic, in ...
Methods are described for the measurement of spectral absorption coefficients, fluorescence excitati...
An analytic model (AM) was developed to solve the radiative transfer equation for the natural fluore...
We report the first radiative transfer model that is able to simulate phytoplankton fluorescence wit...
Phytoplankton play a vital role as primary producers in aquatic ecosystems and there is interest amo...
Fluorometric determination of the chlorophyll (Chl) content of cyanobacteria is impeded by the uniqu...
In fluorometric phytoplankton analysis, the detection of red cyanobacteria is hampered by acclimatio...
AbstractThe concentration of phytoplankton is often used to assess the ecological status of water bo...
given frequency, and that of absorption, k(v), at the same frequency, is applied, in its modified fo...
AbstractFluorometric determination of the chlorophyll (Chl) content of cyanobacteria is impeded by t...
The relationship between flow cytometric fluorescence signals and photosynthetic pigments was invest...
Copyrighted by American Geophysical Union.Optical oceanography models of attenuation and scattering ...
Dissolved and suspended materials in the ocean modify the in-water light field by absorbing and scat...
Phytoplankton live in a dynamic environment and are capable of changing and adapting to varying leve...
We report the first radiative transfer model that is able to simulate phytoplankton fluorescence wit...
The photosynthesis-irradiance curve (or PI-curve, for short) in phytoplankton is highly plastic, in ...