International audienceImaging and localizing single molecules with high accuracy in a 3D volume is a challenging task. Here we combine multifocal microscopy, a recently developed volumetric imaging technique, with point spread function engineering to achieve an increased depth for single molecule imaging. Applications in 3D single molecule localization-based super-resolution imaging is shown over an axial depth of 4 µm as well as for the tracking of diffusing beads in a fluid environment over 8 µm
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Nanoscale localization of point emitters is critical to several methods in optical fluorescence micr...
The point spread function (PSF) of a widefield fluorescence microscope is not suitable for three-dim...
We present a real-time fitter for 3D single-molecule localization microscopy using experimental poin...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
We propose a widefield-based rapid super-resolution volume imaging technique. This technique require...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
In recent years, super-resolution imaging has become an important fluorescent microscopy tool. It ha...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
In single-molecule localization microscopy (SMLM), the use of engineered point spread functions (PSF...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
An outstanding challenge in single-molecule localization microscopy is the accurate and precise loca...
Super-resolution imaging techniques are of paramount interest for applications in bioimaging and flu...
We propose fundamental improvements in three-dimensional (3D) resolution of multiple excitation spot...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Nanoscale localization of point emitters is critical to several methods in optical fluorescence micr...
The point spread function (PSF) of a widefield fluorescence microscope is not suitable for three-dim...
We present a real-time fitter for 3D single-molecule localization microscopy using experimental poin...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
We propose a widefield-based rapid super-resolution volume imaging technique. This technique require...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
In recent years, super-resolution imaging has become an important fluorescent microscopy tool. It ha...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
In single-molecule localization microscopy (SMLM), the use of engineered point spread functions (PSF...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
An outstanding challenge in single-molecule localization microscopy is the accurate and precise loca...
Super-resolution imaging techniques are of paramount interest for applications in bioimaging and flu...
We propose fundamental improvements in three-dimensional (3D) resolution of multiple excitation spot...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Nanoscale localization of point emitters is critical to several methods in optical fluorescence micr...
The point spread function (PSF) of a widefield fluorescence microscope is not suitable for three-dim...