SummaryOptical imaging of the dynamics of living specimens involves tradeoffs between spatial resolution, temporal resolution, and phototoxicity, made more difficult in three dimensions. Here, however, we report that rapid three-dimensional (3D) dynamics can be studied beyond the diffraction limit in thick or densely fluorescent living specimens over many time points by combining ultrathin planar illumination produced by scanned Bessel beams with super-resolution structured illumination microscopy. We demonstrate in vivo karyotyping of chromosomes during mitosis and identify different dynamics for the actin cytoskeleton at the dorsal and ventral surfaces of fibroblasts. Compared to spinning disk confocal microscopy, we demonstrate substanti...
By introducing beam-scanning multifocal multiphoton 4Pi- nfocal microscopy, we have attained fast fl...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
Descloux A, Mueller M, Navikas V, et al. High-speed multiplane structured illumination microscopy of...
Optical imaging of the dynamics of living specimens involves tradeoffs between spatial resolution, t...
AbstractThe use of propagation invariant Bessel beams has enabled high-resolution subcellular light ...
Biomedical study researchers using animals to model disease and treatment need fast, deep, noninvasi...
Structured-Illumination Microscopy (SIM) can increase the spatial resolution of a wide-field light m...
Three-dimensional imaging of fast intracellular processes by fluorescence microscopy should provide ...
Background: Optical super-resolution imaging of fluorescently stained biological samples is rapidly...
AbstractIn subcellular light-sheet fluorescence microscopy (LSFM) of adherent cells, glass substrate...
AbstractBy delivering optical images with spatial resolutions below the diffraction limit, several s...
Sandmeyer A, Lachetta M, Sandmeyer H, Hübner W, Huser T, Müller M. DMD-based super-resolution struct...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Anyone who has used a light microscope has wished that its resolution could be a little better. Now,...
This is the final version. Available from the publisher via the DOI in this record.Background: Optic...
By introducing beam-scanning multifocal multiphoton 4Pi- nfocal microscopy, we have attained fast fl...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
Descloux A, Mueller M, Navikas V, et al. High-speed multiplane structured illumination microscopy of...
Optical imaging of the dynamics of living specimens involves tradeoffs between spatial resolution, t...
AbstractThe use of propagation invariant Bessel beams has enabled high-resolution subcellular light ...
Biomedical study researchers using animals to model disease and treatment need fast, deep, noninvasi...
Structured-Illumination Microscopy (SIM) can increase the spatial resolution of a wide-field light m...
Three-dimensional imaging of fast intracellular processes by fluorescence microscopy should provide ...
Background: Optical super-resolution imaging of fluorescently stained biological samples is rapidly...
AbstractIn subcellular light-sheet fluorescence microscopy (LSFM) of adherent cells, glass substrate...
AbstractBy delivering optical images with spatial resolutions below the diffraction limit, several s...
Sandmeyer A, Lachetta M, Sandmeyer H, Hübner W, Huser T, Müller M. DMD-based super-resolution struct...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
Anyone who has used a light microscope has wished that its resolution could be a little better. Now,...
This is the final version. Available from the publisher via the DOI in this record.Background: Optic...
By introducing beam-scanning multifocal multiphoton 4Pi- nfocal microscopy, we have attained fast fl...
We demonstrate three-dimensional (3D) super-resolution live-cell imaging through thick specimens (50...
Descloux A, Mueller M, Navikas V, et al. High-speed multiplane structured illumination microscopy of...