A test system for cell viability based on colony formation has been established and applied to high resolution fluorescence microscopy and single molecule detection. Living cells were irradiated either by epi-illumination or by total internal reflection (TIR) of a laser beam, and light doses where at least 90% of irradiated cells survived were determined. These light doses were in the range of a few J/cm2 up to about 200 J/cm2 depending on the wavelength of illumination as well as on the presence or absence of a fluorescent dye (e.g., the membrane marker laurdan). In general, cells were less sensitive to TIR than to epi-illumination. However, comparably high light doses needed for repetitive excitation of single molecules limit the applicat...
Cell viability and DNA denaturation are measured through two-photon fluorescence excitation using a ...
Imaging living cells at a resolution higher than the resolution of optical microscopy is a significa...
In the last two decades emerging single-molecule fluorescence tools have been developed and adapted ...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
In live cell imaging of fluorescent proteins, phototoxicity of the excitation light can be problemat...
simple and relatively inexpensive system is described for obtaining quantitative fluorescence measur...
International audienceFluorescence-based imaging regimes require exposure of living samples under st...
Technologies for vitally labeling cells with fluorescent dyes have advanced remarkably. However, to ...
International audienceAdvances in fundamental physical and optical principles applied to novel fluor...
Due to their unique properties—coherent radiation, diffraction limited focusing, low spectral bandwi...
Cell viability and DNA denaturation are measured through two-photon fluorescence excitation using a ...
The use of fluorescence in microscopy has introduced unprecedented specificity and contrast, paving ...
Cell viability and DNA denaturation are measured through two-photon fluorescence excitation using a ...
Imaging living cells at a resolution higher than the resolution of optical microscopy is a significa...
In the last two decades emerging single-molecule fluorescence tools have been developed and adapted ...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
Super-resolution microscopy can unravel previously hidden details of cellular structures but require...
In live cell imaging of fluorescent proteins, phototoxicity of the excitation light can be problemat...
simple and relatively inexpensive system is described for obtaining quantitative fluorescence measur...
International audienceFluorescence-based imaging regimes require exposure of living samples under st...
Technologies for vitally labeling cells with fluorescent dyes have advanced remarkably. However, to ...
International audienceAdvances in fundamental physical and optical principles applied to novel fluor...
Due to their unique properties—coherent radiation, diffraction limited focusing, low spectral bandwi...
Cell viability and DNA denaturation are measured through two-photon fluorescence excitation using a ...
The use of fluorescence in microscopy has introduced unprecedented specificity and contrast, paving ...
Cell viability and DNA denaturation are measured through two-photon fluorescence excitation using a ...
Imaging living cells at a resolution higher than the resolution of optical microscopy is a significa...
In the last two decades emerging single-molecule fluorescence tools have been developed and adapted ...