This work deals with the possibility of Raman spectroscopical identification of selected biomarkers of extremophile species. It focuses mainly on selected cyanobacteria, algae and lichens with an emphasis on the ability to detect carotenoids. These pigments exhibit three characteristic bands of Raman spectra which represent stretching vibrations C=C; C-C and bending vibration C-CH3 in molecules of carotenoids. Raman spectra were measured not only by laboratory microspectrometers (λ - 514 nm and 532 nm), but also by portable and handheld spectrometers (λ - 532 nm, 785 nm and 700 - 1100 nm). In the case of cyanobacteria, the spectroscopical analysis was performed also on the fractions obtained by high performance liquid chromatography (HPLC)....
Resonance Raman spectroscopy with ultraviolet (UV) excitation has been demonstrated to be a valuable...
Raman spectroscopy appears to be an ideal technique for the initial detection of biomarkers, molecul...
In the present study, we explore the feasibility of Raman spectroscopy for intracellular monitoring ...
NoIn this paper, it is demonstrated how Raman spectroscopy can be used to detect different carotenoi...
In this thesis Raman spectroscopy is evaluated as a tool of identification and discrimination of car...
The combination of Raman and Infrared spectroscopic signatures were used to find the different vibra...
Nowadays, there is an interest in biomedical and nanobiotechnological studies, such as studies on ca...
Cyanobacteria and algae comprise a large and diverse group of organisms that are widely distributed ...
NoCyanobacteria have established dominant aquatic populations around the world, generally in aggress...
Eight miniaturized Raman spectrometers were used to perform a fast outdoor screening and discriminat...
Raman spectroscopy is a powerful tool for identification both inorganic and organic compounds includ...
In the context of astrobiological exposure and simulation experiments in the BIOMEX project, the lic...
Cyanobacteria are capable of tolerating environmental extremes. To survive in extreme environments, ...
A method was developed for the characterisation of carotenoid pigments in algal species using Raman ...
Advanced optical instruments are useful for analysis and manipulation of individual living cells and...
Resonance Raman spectroscopy with ultraviolet (UV) excitation has been demonstrated to be a valuable...
Raman spectroscopy appears to be an ideal technique for the initial detection of biomarkers, molecul...
In the present study, we explore the feasibility of Raman spectroscopy for intracellular monitoring ...
NoIn this paper, it is demonstrated how Raman spectroscopy can be used to detect different carotenoi...
In this thesis Raman spectroscopy is evaluated as a tool of identification and discrimination of car...
The combination of Raman and Infrared spectroscopic signatures were used to find the different vibra...
Nowadays, there is an interest in biomedical and nanobiotechnological studies, such as studies on ca...
Cyanobacteria and algae comprise a large and diverse group of organisms that are widely distributed ...
NoCyanobacteria have established dominant aquatic populations around the world, generally in aggress...
Eight miniaturized Raman spectrometers were used to perform a fast outdoor screening and discriminat...
Raman spectroscopy is a powerful tool for identification both inorganic and organic compounds includ...
In the context of astrobiological exposure and simulation experiments in the BIOMEX project, the lic...
Cyanobacteria are capable of tolerating environmental extremes. To survive in extreme environments, ...
A method was developed for the characterisation of carotenoid pigments in algal species using Raman ...
Advanced optical instruments are useful for analysis and manipulation of individual living cells and...
Resonance Raman spectroscopy with ultraviolet (UV) excitation has been demonstrated to be a valuable...
Raman spectroscopy appears to be an ideal technique for the initial detection of biomarkers, molecul...
In the present study, we explore the feasibility of Raman spectroscopy for intracellular monitoring ...