The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived states, stands out by its coordinate-targeted sequential sample interrogation using low light levels. While RESOLFT has been shown to discern nanostructures in living cells, the reversibly photoswitchable green fluorescent protein (rsEGFP) employed in these experiments was switched rather slowly and recording lasted tens of minutes. We now report on the generation of rsEGFP2 providing faster switching and the use of this protein to demonstrate 25–250 times faster recordings
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imagin...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Up to now, all demonstrations of reversible saturable optical fluorescence transitions (RESOLFT) sup...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
Among various superresolution methods, RESOLFT nanoscopy has advantages in compatibility with live c...
RESOLFT super-resolution microscopy allows subdiffraction resolution imaging of living cells using l...
Interaction and spatial organization of subcellular structures within living cells are an essential ...
Fluorescence microscopy is rapidly turning into nanoscopy. Among the various nanoscopy methods, the ...
International audienceReversibly photoswitchable fluorescent proteins are essential markers for adva...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Fluorescence microscopy is an important and widely used tool in the life sciences due to its unique ...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imagin...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Up to now, all demonstrations of reversible saturable optical fluorescence transitions (RESOLFT) sup...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
Among various superresolution methods, RESOLFT nanoscopy has advantages in compatibility with live c...
RESOLFT super-resolution microscopy allows subdiffraction resolution imaging of living cells using l...
Interaction and spatial organization of subcellular structures within living cells are an essential ...
Fluorescence microscopy is rapidly turning into nanoscopy. Among the various nanoscopy methods, the ...
International audienceReversibly photoswitchable fluorescent proteins are essential markers for adva...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Fluorescence microscopy is an important and widely used tool in the life sciences due to its unique ...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imagin...