Structured illumination microscopy (SIM) is a wide-field technique in fluorescence microscopy that provides fast data acquisition and two-fold resolution improvement beyond the Abbe limit. We observed a further resolution improvement using the nonlinear emission response of a fluorescent protein. We demonstrated a two-beam nonlinear structured illumination microscope by introducing only a minor change into the system used for linear SIM (LSIM). To achieve the required nonlinear dependence in nonlinear SIM (NL-SIM) we exploited the photoswitching of the recently introduced fluorophore Kohinoor. It is particularly suitable due to its positive contrast photoswitching characteristics. Contrary to other reversibly photoswitchable fluorescent pro...
Reversibly switchable fluorescent proteins (RSFPs) can be effectively used for super-resolution opti...
Fluorescence microscopy is an essential technique for live cell imaging. One of its drawbacks is a r...
Superresolution fluorescence microscopy overcomes the diffraction resolution barrier and allows the ...
Structured illumination microscopy (SIM) is a wide-field technique in fluorescence microscopy that p...
Structured-Illumination Microscopy (SIM) can increase the spatial resolution of a wide-field light m...
The understanding of the biological processes at the cellular and subcellular level requires the abi...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
Fluorescence microscopy is a powerful method to study living systems with high spatial and temporal ...
All fluorescence super-resolution microscopy techniques present trade-offs between, for example, res...
The developments of fluorescence microscopy techniques has advanced our understanding of biological ...
Widefield fluorescence microscopy is seeing dramatic improvements in resolution, reaching today 100n...
Fluorescence microscopy is a powerful method to study living systems with high spatial and temporal ...
For centuries, cell biology has been based on light microscopy and at the same time been limited by ...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
A challenge in biological imaging is to capture high-resolution images at fast frame rates in live c...
Reversibly switchable fluorescent proteins (RSFPs) can be effectively used for super-resolution opti...
Fluorescence microscopy is an essential technique for live cell imaging. One of its drawbacks is a r...
Superresolution fluorescence microscopy overcomes the diffraction resolution barrier and allows the ...
Structured illumination microscopy (SIM) is a wide-field technique in fluorescence microscopy that p...
Structured-Illumination Microscopy (SIM) can increase the spatial resolution of a wide-field light m...
The understanding of the biological processes at the cellular and subcellular level requires the abi...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
Fluorescence microscopy is a powerful method to study living systems with high spatial and temporal ...
All fluorescence super-resolution microscopy techniques present trade-offs between, for example, res...
The developments of fluorescence microscopy techniques has advanced our understanding of biological ...
Widefield fluorescence microscopy is seeing dramatic improvements in resolution, reaching today 100n...
Fluorescence microscopy is a powerful method to study living systems with high spatial and temporal ...
For centuries, cell biology has been based on light microscopy and at the same time been limited by ...
Diffraction-limited lens-based optical microscopy fails to discern fluorescent features closer than ...
A challenge in biological imaging is to capture high-resolution images at fast frame rates in live c...
Reversibly switchable fluorescent proteins (RSFPs) can be effectively used for super-resolution opti...
Fluorescence microscopy is an essential technique for live cell imaging. One of its drawbacks is a r...
Superresolution fluorescence microscopy overcomes the diffraction resolution barrier and allows the ...