International audienceNon-uniform illumination limits quantitative analyses of fluorescence imaging techniques. In particular, single molecule localization microscopy (SMLM) relies on high irradiances, but conventional Gaussian-shaped laser illumination restricts the usable field of view to around 40 µm × 40 µm. We present Adaptable Scanning for Tunable Excitation Regions (ASTER), a versatile illumination technique that generates uniform and adaptable illumination. ASTER is also highly compatible with optical sectioning techniques such as total internal reflection fluorescence (TIRF). For SMLM, ASTER delivers homogeneous blinking kinetics at reasonable laser power over fields-of-view up to 200 µm × 200 µm. We demonstrate that ASTER improves...
Super-resolution single-molecule localization microscopy, often referred to as PALM/STORM, works by ...
ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light mi...
AbstractWe demonstrate nanoscale resolution in far-field fluorescence microscopy using reversible ph...
International audienceNon-uniform illumination limits quantitative analyses of fluorescence imaging ...
Homogeneous illumination in single-molecule localization microscopy (SMLM) is key for the quantitati...
Fluorescence and Single Molecule Localization Microscopy (SMLM) allows for thespecific labeling and ...
Due to the diffraction limit of light, the resolution of fluorescence light microscopy is limited to...
The development of super-resolution microscopy techniques, which are able to achieve resolutions in ...
The diffraction limit fundamentally restricts the achievable resolution of conventional microscopes,...
La microscopie de fluorescence et la microscopie de localisation de molécules uniques (SMLM) permett...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
Within only a few years super-resolution fluorescence imaging based on single-molecule localization ...
International audienceFor over a decade fluorescence microscopy has demonstrated the capacity to ach...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Super-resolution single-molecule localization microscopy, often referred to as PALM/STORM, works by ...
ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light mi...
AbstractWe demonstrate nanoscale resolution in far-field fluorescence microscopy using reversible ph...
International audienceNon-uniform illumination limits quantitative analyses of fluorescence imaging ...
Homogeneous illumination in single-molecule localization microscopy (SMLM) is key for the quantitati...
Fluorescence and Single Molecule Localization Microscopy (SMLM) allows for thespecific labeling and ...
Due to the diffraction limit of light, the resolution of fluorescence light microscopy is limited to...
The development of super-resolution microscopy techniques, which are able to achieve resolutions in ...
The diffraction limit fundamentally restricts the achievable resolution of conventional microscopes,...
La microscopie de fluorescence et la microscopie de localisation de molécules uniques (SMLM) permett...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
Within only a few years super-resolution fluorescence imaging based on single-molecule localization ...
International audienceFor over a decade fluorescence microscopy has demonstrated the capacity to ach...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Super-resolution single-molecule localization microscopy, often referred to as PALM/STORM, works by ...
ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light mi...
AbstractWe demonstrate nanoscale resolution in far-field fluorescence microscopy using reversible ph...