AbstractChanging the data representation from the classical time delay histogram to the phasor representation provides a global view of the fluorescence decay at each pixel of an image. In the phasor representation we can easily recognize the presence of different molecular species in a pixel or the occurrence of fluorescence resonance energy transfer. The analysis of the fluorescence lifetime imaging microscopy (FLIM) data in the phasor space is done observing clustering of pixels values in specific regions of the phasor plot rather than by fitting the fluorescence decay using exponentials. The analysis is instantaneous since is not based on calculations or nonlinear fitting. The phasor approach has the potential to simplify the way data a...
AbstractGlobal fitting algorithms have been shown to improve effectively the accuracy and precision ...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
AbstractFluorescence lifetime imaging microscopy (FLIM) is a quantitative microscopy technique for i...
Changing the data representation from the classical time delay histogram to the phasor representatio...
Changing the data representation from the classical time delay histogram to the phasor representatio...
AbstractChanging the data representation from the classical time delay histogram to the phasor repre...
We present here the phasor approach to biosensor FRET detection by fluorescence lifetime imaging mic...
We present here the phasor approach to biosensor FRET detection by fluorescence lifetime imaging mic...
Fluorescence lifetime imaging is a versatile tool that permits mapping the biochemical environment i...
Despite their widespread use in cell biology, fluorescence lifetime imaging microscopy (FLIM) data-s...
Fluorescence lifetime imaging microscopy (FLIM) and spectral imaging are two broadly applied methods...
AbstractGlobal analysis techniques are described for frequency domain fluorescence lifetime imaging ...
AbstractFluorescence lifetime imaging microscopy presents a powerful tool in biology and biophysics ...
The phasor approach is used in fluorescence lifetime imaging microscopy for several purposes, notabl...
We present here the phasor approach to biosensor Förster resonance energy transfer (FRET) detection ...
AbstractGlobal fitting algorithms have been shown to improve effectively the accuracy and precision ...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
AbstractFluorescence lifetime imaging microscopy (FLIM) is a quantitative microscopy technique for i...
Changing the data representation from the classical time delay histogram to the phasor representatio...
Changing the data representation from the classical time delay histogram to the phasor representatio...
AbstractChanging the data representation from the classical time delay histogram to the phasor repre...
We present here the phasor approach to biosensor FRET detection by fluorescence lifetime imaging mic...
We present here the phasor approach to biosensor FRET detection by fluorescence lifetime imaging mic...
Fluorescence lifetime imaging is a versatile tool that permits mapping the biochemical environment i...
Despite their widespread use in cell biology, fluorescence lifetime imaging microscopy (FLIM) data-s...
Fluorescence lifetime imaging microscopy (FLIM) and spectral imaging are two broadly applied methods...
AbstractGlobal analysis techniques are described for frequency domain fluorescence lifetime imaging ...
AbstractFluorescence lifetime imaging microscopy presents a powerful tool in biology and biophysics ...
The phasor approach is used in fluorescence lifetime imaging microscopy for several purposes, notabl...
We present here the phasor approach to biosensor Förster resonance energy transfer (FRET) detection ...
AbstractGlobal fitting algorithms have been shown to improve effectively the accuracy and precision ...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
AbstractFluorescence lifetime imaging microscopy (FLIM) is a quantitative microscopy technique for i...