International audienceWe propose an Adaptive Optics Light-Sheet Fluorescence Microscope (AO-LSFM) for closed-loop aberrations correction at the emission path, providing intrinsic instrumental simplicity and high accuracy when compared to previously reported schemes. The approach is based on direct wavefront sensing i.e. not on time-consuming iterative algorithms, and does not require the use of any guide star thus reducing instrumental complexity and/or sample preparation constraints. The design is based on a modified Shack-Hartmann wavefront sensor providing compatibility with extended sources such as images from optical sectioning microscopes. We report an AO-LSFM setup based on such sensor including characterization of the sensor perform...
Optical microscopy is still the main research tool for many biological studies. Indeed with the adve...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...
International audienceWe propose an Adaptive Optics Light-Sheet Fluorescence Microscope (AO-LSFM) fo...
When targeting neuroimaging of neuronal networks in live thick specimens with high temporal and spat...
We report on the development of a widefield microscope that achieves adaptive optics correction thro...
L'utilisation de la microscopie de fluorescence à feuille de lumière (LSFM) pour la neuroimagerie a ...
We demonstrate how a novel approach for closed-loop Adaptive Optics (AO) specifically adapted to mic...
Adaptive optics (AO) can potentially allow high resolution imaging deep inside living tissue, mitiga...
Aberrations, scattering and absorption degrade the performance light-sheet fluorescence microscopes ...
Aberrations, scattering and absorption degrade the performance light-sheet fluorescence microscopes ...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Optical microscopy is still the main research tool for many biological studies. Indeed with the adve...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...
International audienceWe propose an Adaptive Optics Light-Sheet Fluorescence Microscope (AO-LSFM) fo...
When targeting neuroimaging of neuronal networks in live thick specimens with high temporal and spat...
We report on the development of a widefield microscope that achieves adaptive optics correction thro...
L'utilisation de la microscopie de fluorescence à feuille de lumière (LSFM) pour la neuroimagerie a ...
We demonstrate how a novel approach for closed-loop Adaptive Optics (AO) specifically adapted to mic...
Adaptive optics (AO) can potentially allow high resolution imaging deep inside living tissue, mitiga...
Aberrations, scattering and absorption degrade the performance light-sheet fluorescence microscopes ...
Aberrations, scattering and absorption degrade the performance light-sheet fluorescence microscopes ...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
Optical microscopy is still the main research tool for many biological studies. Indeed with the adve...
Single-molecule localization microscopy (SMLM) enables the high-resolution visualization of organell...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...