Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and synthetic nanostructures down to 10-20 nm in size to be imaged. However, the direct optical observation of individual molecular targets (similar to 5 nm) in a densely packed biomolecular cluster remains a challenge. Here, we show that such discrete molecular imaging is possible using DNA-PAINT (points accumulation for imaging in nanoscale topography) a super-resolution fluorescence microscopy technique that exploits programmable transient oligonucleotide hybridization on synthetic DNA nanostructures. We examined the effects of a high photon count, high blinking statistics and an appropriate blinking duty cycle on imaging quality, and developed ...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
Correlating DNA-PAINT (point accumulation for imaging in nanoscale topography) and single-molecule F...
Super-resolution microscopies, such as single molecule localization microscopy (SMLM), allow the vis...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
Recent advances in fluorescence super-resolution microscopy have allowed sub-cellular features and s...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Optical super-resolution microscopy is rapidly changing the way imaging studies in the biological an...
DNA point accumulation for imaging in nanoscale topography (PAINT) is a rapidly developing fluoresce...
We employ the single-particle fluorescence nanoscopy technique points accumulation for imaging in na...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
Current far-field super-resolution techniques offer unprecedented spatial resolution, however, the i...
We employ the single-particle fluorescence nanoscopy technique points accumulation for imaging in na...
DNA-PAINT is an optical super-resolution microscopy method that can visualize nanoscale protein arra...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
Correlating DNA-PAINT (point accumulation for imaging in nanoscale topography) and single-molecule F...
Super-resolution microscopies, such as single molecule localization microscopy (SMLM), allow the vis...
Recent advances in fluorescence super-resolution microscopy have allowed subcellular features and sy...
Recent advances in fluorescence super-resolution microscopy have allowed sub-cellular features and s...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Optical super-resolution microscopy is rapidly changing the way imaging studies in the biological an...
DNA point accumulation for imaging in nanoscale topography (PAINT) is a rapidly developing fluoresce...
We employ the single-particle fluorescence nanoscopy technique points accumulation for imaging in na...
Understanding biomolecular information at the single-molecule level requires tools for manipulating ...
Current far-field super-resolution techniques offer unprecedented spatial resolution, however, the i...
We employ the single-particle fluorescence nanoscopy technique points accumulation for imaging in na...
DNA-PAINT is an optical super-resolution microscopy method that can visualize nanoscale protein arra...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
DNA point accumulation in nanoscale topography (DNA-PAINT) enables super-resolution microscopy by ha...
Correlating DNA-PAINT (point accumulation for imaging in nanoscale topography) and single-molecule F...
Super-resolution microscopies, such as single molecule localization microscopy (SMLM), allow the vis...