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Stochastic Optical Reconstruction Microscopy (STORM) reconstructs a super-resolution fluorescence image by combining precise localization information for individual fluorophores in complex fluorescent ...
Our gated 3D STED system enables super-resolution imaging of some green and red fluorophores to ~50 nm xy and ~150 nm z resolution. Single molecule localisation nanoscopy methods such as STORM, PALM ...
Our approach to super-resolution microscopy is fundamentally different from most existing techniques such as stimulated emission depletion microscopy, structured illumination microscopy, or ...
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In fact, STED and PALM/STORM, as well as the more recent ... became the foundation of the burgeoning field of ...
Example of super-resolution microscopy: The image shows how the Discrete Molecular Imaging (DMI) technology visualizes densely packed individual targets that are just 5 nanometer apart from each other ...
SMLM techniques, such as PALM and STORM, rely on the precise localization of individual fluorophores ... as well as the integration of STED with other super-resolution techniques like single-molecule ...
The authors demonstrate an AI-enhanced imaging method combining lipid-specific dyes and super-resolution microscopy enables simultaneous tracking of up to 15 organelles in living cells ...
Inspired by a super-resolution microscopy technique known as STED, we are showing that it is indeed possible to write features whose dimensions are substantially smaller than the diffraction limit.
Structured illumination super resolution microscope for 3D-SIM, 2D-SIM, and 2D-SIM-TIRF offering twice the resolution of conventional imaging with standard fluorophores.
Scientists can now use super-resolution microscopy to directly observe living subcellular structures and activities. In this piece, we explore the basics of three popular super-resolution techniques.
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