The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyzed and exploited for their discrimination in liquid samples. The proposed approach is based on relative fluorescence peak amplitude of natural pigments in cyanobacteria or other planktonic species commonly present in water bodies. The experimental results demonstrate a clear discrimination between the various species of cyanobacteria and other planktonic species. This approach can be simply implemented in fluorescence measurement systems for real-time detection of cyanobacteria, provided that they are able to operate in deep ultraviolet
In fluorometric phytoplankton analysis, the detection of red cyanobacteria is hampered by acclimatio...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Members of the same division of algae have a similar pigment composition. This results in typical fl...
Members of the same division of algae have a similar pigment composition. This results in typical fl...
A new methodology enabling rapid evaluation of the phytoplankton community structure and distributio...
A new methodology enabling rapid evaluation of the phytoplankton community structure and distributio...
The 'spectral groups' of algae (green, blue, brown, mixed) are each characterized by a specific comp...
The 'spectral groups' of algae (green, blue, brown, mixed) are each characterized by a specific comp...
In fluorometric phytoplankton analysis, the detection of red cyanobacteria is hampered by acclimatio...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
The deep ultraviolet fluorescence characteristics of several cyanobacteria and microalgae are analyz...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Fingerprints of excitation spectra of chlorophyll (Chl) fluorescence can be used to differentiate ''...
Members of the same division of algae have a similar pigment composition. This results in typical fl...
Members of the same division of algae have a similar pigment composition. This results in typical fl...
A new methodology enabling rapid evaluation of the phytoplankton community structure and distributio...
A new methodology enabling rapid evaluation of the phytoplankton community structure and distributio...
The 'spectral groups' of algae (green, blue, brown, mixed) are each characterized by a specific comp...
The 'spectral groups' of algae (green, blue, brown, mixed) are each characterized by a specific comp...
In fluorometric phytoplankton analysis, the detection of red cyanobacteria is hampered by acclimatio...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...
International audienceWe present results that were obtained with a newly developed fluorometer, the ...