We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50-150 μm), by coupling far-field individual molecule localization with selective plane illumination microscopy (SPIM). The improved signal-to-noise ratio of selective plane illumination allows nanometric localization of single molecules in thick scattering specimens without activating or exciting molecules outside the focal plane. We report 3D super-resolution imaging of cellular spheroids
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
A short overview on 3D live cell imaging is given. Relevant samples are described and various proble...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
In this paper we present a case-study about recent breakthroughs of three-dimensional (3D) super-res...
We propose clean localization microscopy (a variant of fPALM) using a molecule filtering technique. ...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
We report super-resolution fluorescence imaging of live cells with high spatiotemporal resolutions u...
Single-molecule localization microscopy has greatly improved our understanding of biology by providi...
SummaryFluorescence nanoscopy, or super-resolution microscopy, has become an important tool in cell ...
We report super-resolution fluorescence imaging of live cells with high spatiotemporal resolution us...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
Novel methods of visible light microscopy have overcome the limits of resolution hitherto thought to...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
A short overview on 3D live cell imaging is given. Relevant samples are described and various proble...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
In this paper we present a case-study about recent breakthroughs of three-dimensional (3D) super-res...
We propose clean localization microscopy (a variant of fPALM) using a molecule filtering technique. ...
Super-resolution (SR) methodologies permit the visualization of cellular structures at near-molecula...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
We report super-resolution fluorescence imaging of live cells with high spatiotemporal resolutions u...
Single-molecule localization microscopy has greatly improved our understanding of biology by providi...
SummaryFluorescence nanoscopy, or super-resolution microscopy, has become an important tool in cell ...
We report super-resolution fluorescence imaging of live cells with high spatiotemporal resolution us...
International audienceWe have developed a 3D super-resolution microscopy method that enables deep im...
Single-molecule localization microscopy (SMLM) can visualize biological targets on the nanoscale, bu...
Novel methods of visible light microscopy have overcome the limits of resolution hitherto thought to...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
The study of cellular processes in three-dimensions is severely limited by the lack of imaging metho...
A short overview on 3D live cell imaging is given. Relevant samples are described and various proble...