International audienceLive-cell super-resolution microscopy enables the imaging of biological structure dynamics below the diffraction limit. Here we present enhanced super-resolution radial fluctuations (eSRRF), substantially improving image fidelity and resolution compared to the original SRRF method. eSRRF incorporates automated parameter optimization based on the data itself, giving insight into the trade-off between resolution and fidelity. We demonstrate eSRRF across a range of imaging modalities and biological systems. Notably, we extend eSRRF to three dimensions by combining it with multifocus microscopy. This realizes live-cell volumetric super-resolution imaging with an acquisition speed of ~1 volume per second. eSRRF provides an ...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
International audienceSuper-resolution fluorescence microscopy has been instrumental to progress in ...
Schermelleh L, Ferrand A, Huser T, et al. Super-resolution microscopy demystified. NATURE CELL BIOLO...
Despite significant progress, high-speed live-cell super-resolution studies remain limited to specia...
Super-resolution microscopy techniques break the diffraction limit of conventional optical microscop...
Expansion microscopy physically enlarges biological specimens to achieve nanoscale resolution using ...
Super-resolution radial fluctuations (SRRF) is a combination of temporal fluctuation analysis and lo...
The diffraction limit fundamentally restricts the achievable resolution of conventional microscopes,...
Super-resolution fluorescence microscopy has become a well-established tool for structural cell biol...
Super-resolution microscopy opens up a new era for visualizing the dynamic subcellular structure and...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
Super-resolution fluorescence microscopy techniques have enabled dramatic development in modern biol...
<div> <div> <div> <p>ImageJ is one of the main platforms for algorithms enabling super-resolution mi...
Dertinger T, Coyler R, Vogel R, et al. Superresolution Optical Fluctuation Imaging (SOFI). In: Zahav...
Super-resolution microscopy is increasingly becoming an important tool for biological research, prov...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
International audienceSuper-resolution fluorescence microscopy has been instrumental to progress in ...
Schermelleh L, Ferrand A, Huser T, et al. Super-resolution microscopy demystified. NATURE CELL BIOLO...
Despite significant progress, high-speed live-cell super-resolution studies remain limited to specia...
Super-resolution microscopy techniques break the diffraction limit of conventional optical microscop...
Expansion microscopy physically enlarges biological specimens to achieve nanoscale resolution using ...
Super-resolution radial fluctuations (SRRF) is a combination of temporal fluctuation analysis and lo...
The diffraction limit fundamentally restricts the achievable resolution of conventional microscopes,...
Super-resolution fluorescence microscopy has become a well-established tool for structural cell biol...
Super-resolution microscopy opens up a new era for visualizing the dynamic subcellular structure and...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
Super-resolution fluorescence microscopy techniques have enabled dramatic development in modern biol...
<div> <div> <div> <p>ImageJ is one of the main platforms for algorithms enabling super-resolution mi...
Dertinger T, Coyler R, Vogel R, et al. Superresolution Optical Fluctuation Imaging (SOFI). In: Zahav...
Super-resolution microscopy is increasingly becoming an important tool for biological research, prov...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
International audienceSuper-resolution fluorescence microscopy has been instrumental to progress in ...
Schermelleh L, Ferrand A, Huser T, et al. Super-resolution microscopy demystified. NATURE CELL BIOLO...