We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique employing reversibly switchable fluorescent proteins (rsFPs), is capable of dual-channel live-cell imaging that is virtually free of chromatic errors and temporal offsets. This is accomplished using rsEGFP and Dronpa, two rsFPs having similar spectra but different kinetics of switching and fluorescence emission. Our approach is demonstrated by imaging protein distributions and dynamics in living neurons and neuronal tissues
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
AbstractReversibly switchable fluorescent proteins (RSFPs) are GFP-like proteins that may be repeate...
Among various superresolution methods, RESOLFT nanoscopy has advantages in compatibility with live c...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Up to now, all demonstrations of reversible saturable optical fluorescence transitions (RESOLFT) sup...
Lens-based fluorescence microscopy, which has long been limited in resolution to about 200 nanometer...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
SummaryLens-based fluorescence microscopy, which has long been limited in resolution to about 200 na...
Fluorescence microscopy is rapidly turning into nanoscopy. Among the various nanoscopy methods, the ...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
RESOLFT super-resolution microscopy allows subdiffraction resolution imaging of living cells using l...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Reversibly switchable fluorescent proteins (RSFPs) can be repeatedly transferred between a fluoresce...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
AbstractReversibly switchable fluorescent proteins (RSFPs) are GFP-like proteins that may be repeate...
Among various superresolution methods, RESOLFT nanoscopy has advantages in compatibility with live c...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
We show that RESOLFT fluorescence nanoscopy, a low light level scanning superresolution technique em...
Up to now, all demonstrations of reversible saturable optical fluorescence transitions (RESOLFT) sup...
Lens-based fluorescence microscopy, which has long been limited in resolution to about 200 nanometer...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
SummaryLens-based fluorescence microscopy, which has long been limited in resolution to about 200 na...
Fluorescence microscopy is rapidly turning into nanoscopy. Among the various nanoscopy methods, the ...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
The super-resolution microscopy called RESOLFT relying on fluorophore switching between longlived st...
RESOLFT super-resolution microscopy allows subdiffraction resolution imaging of living cells using l...
The reversibly switchable fluorescent proteins (RSFPs) commonly used for RESOLFT nanoscopy have been...
Reversibly switchable fluorescent proteins (RSFPs) can be repeatedly transferred between a fluoresce...
Lens-based optical microscopy failed to discern fluorescent features closer than 200 nm for decades,...
AbstractReversibly switchable fluorescent proteins (RSFPs) are GFP-like proteins that may be repeate...
Among various superresolution methods, RESOLFT nanoscopy has advantages in compatibility with live c...