International audienceWe have developed a 3D super-resolution microscopy method that enables deep imaging in cells. This technique relies on the effective combination of multifocus microscopy and astigmatic 3D single-molecule localization microscopy. We describe the optical system and the fabrication process of its key element, the multifocus grating. Then, two strategies for localizing emitters with our imaging method are presented and compared with a previously described deep 3D localization algorithm. Finally, we demonstrate the performance of the method by imaging the nuclear envelope of eukaryotic cells reaching a depth of field of ~4µm
We describe a method for tracking the position of small features in three dimensions from images rec...
In this paper we present a case-study about recent breakthroughs of three-dimensional (3D) super-res...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
Localization microscopy achieves nanoscale spatial resolution by iterative localization of sparsely ...
Localization microscopy achieves nanoscale spatial resolution by iterative localization of sparsely ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceImaging and localizing single molecules with high accuracy in a 3D volume is a...
We propose clean localization microscopy (a variant of fPALM) using a molecule filtering technique. ...
This thesis describes the design, development and optimisation of a multifunctional localisation bas...
Using single molecule microscopy, biological interactions can be imaged and studied at the level of ...
We describe a method for tracking the position of small features in three dimensions from images rec...
In this paper we present a case-study about recent breakthroughs of three-dimensional (3D) super-res...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
Localization microscopy achieves nanoscale spatial resolution by iterative localization of sparsely ...
Localization microscopy achieves nanoscale spatial resolution by iterative localization of sparsely ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceImaging and localizing single molecules with high accuracy in a 3D volume is a...
We propose clean localization microscopy (a variant of fPALM) using a molecule filtering technique. ...
This thesis describes the design, development and optimisation of a multifunctional localisation bas...
Using single molecule microscopy, biological interactions can be imaged and studied at the level of ...
We describe a method for tracking the position of small features in three dimensions from images rec...
In this paper we present a case-study about recent breakthroughs of three-dimensional (3D) super-res...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...