Current microscopy demands the visualization of large three-dimensional samples with increased sensitivity, higher resolution, and faster speed. Several imaging techniques based on widefield, point-scanning, and light-sheet strategies have been designed to tackle some of these demands. Although successful, all these require the illuminated volumes to be tightly coupled with the detection optics to accomplish efficient optical sectioning. Here, we break this paradigm and produce optical sections from out-of-focus planes. This is done by extending the depth of field of the detection optics in a light-sheet microscope using wavefront-coding techniques. This passive technique allows accommodation of the light sheet at any place within the exten...
Structured illumination microscopy (SIM) doubles the spatial resolution of a fluorescence microscope...
In vivo fast volumetric imaging using DID-LSFM, Rendering. Originally published in Optica on 20 Augu...
In vivo fast volumetric imaging using DID-LSFM, projections. Originally published in Optica on 20 Au...
We propose a novel light-sheet microscope, capable of high-speed volumetric imaging with high contra...
Fast noninvasive three-dimensional (3D) imaging is crucial for quantitatively studying highly dynami...
Light-sheet microscopes have become the tool of choice for volumetric imaging of large samples. Base...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Light-sheet microscopy is an increasingly popular technique in the life sciences due to its fast 3D ...
In light sheet microscopy, optical sectioning by selective fluorescence excitation with a sheet of l...
Light Sheet Microscopy (LSM), being capable of optical sectioning at diffraction-limited resolution ...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Light sheet microscopy is a powerful technique for rapid, three-dimensional fluorescence imaging of ...
We propose and demonstrate a limited-view light sheet microscopy (LV-LSM) for three dimensional (3D)...
In vivo fast volumetric imaging using DID-LSFM, volumetric videorate. Originally published in Optica...
AbstractIn subcellular light-sheet fluorescence microscopy (LSFM) of adherent cells, glass substrate...
Structured illumination microscopy (SIM) doubles the spatial resolution of a fluorescence microscope...
In vivo fast volumetric imaging using DID-LSFM, Rendering. Originally published in Optica on 20 Augu...
In vivo fast volumetric imaging using DID-LSFM, projections. Originally published in Optica on 20 Au...
We propose a novel light-sheet microscope, capable of high-speed volumetric imaging with high contra...
Fast noninvasive three-dimensional (3D) imaging is crucial for quantitatively studying highly dynami...
Light-sheet microscopes have become the tool of choice for volumetric imaging of large samples. Base...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Light-sheet microscopy is an increasingly popular technique in the life sciences due to its fast 3D ...
In light sheet microscopy, optical sectioning by selective fluorescence excitation with a sheet of l...
Light Sheet Microscopy (LSM), being capable of optical sectioning at diffraction-limited resolution ...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Light sheet microscopy is a powerful technique for rapid, three-dimensional fluorescence imaging of ...
We propose and demonstrate a limited-view light sheet microscopy (LV-LSM) for three dimensional (3D)...
In vivo fast volumetric imaging using DID-LSFM, volumetric videorate. Originally published in Optica...
AbstractIn subcellular light-sheet fluorescence microscopy (LSFM) of adherent cells, glass substrate...
Structured illumination microscopy (SIM) doubles the spatial resolution of a fluorescence microscope...
In vivo fast volumetric imaging using DID-LSFM, Rendering. Originally published in Optica on 20 Augu...
In vivo fast volumetric imaging using DID-LSFM, projections. Originally published in Optica on 20 Au...