Super-resolution microscopy is described as an advanced imaging approach that, when combined with lipid probes, enables detailed analysis of lipid organization.
First-pass extracted concept
super-resolution microscopy
Aliases
SRM
Extracted Explainers
What the tool is doing
Resources required
What problem it solves
Evidence Snippets
Combined with state-of-the-art advanced microscopy approaches, including ultrafast single-molecule imaging and super-resolution microscopy, these probes facilitate high-resolution and quantitative analyses of lipid organization.
Herein we wish to fill this gap by providing the readers with an up-to-date summary of fluorogenic probes applied to super-resolution imaging of cellular structures.
different QD-based imaging applications will be discussed ... ranging from super-resolution microscopy and single-particle tracking over in vitro cell and tissue imaging to in vivo investigations.
These proteins offer the widest range of practical applications, including reversible high-density data bio-storage, photochromic FRET, and super-resolution microscopy by either point-scanning, structured illumination, or single molecule-based wide-field approaches.
Supporting Sources
Linked Claims
Lipid probes combined with ultrafast single-molecule imaging and super-resolution microscopy facilitate high-resolution and quantitative analyses of lipid organization.
At the time of publication, there was no comprehensive review focused on fluorogenic probes suitable for super-resolution microscopy.
Several excellent reviews summarize recent developments in SRM techniques, labeling techniques or different aspects of small synthetic fluorophores, however there is no comprehensive review on fluorogenic probes suitable for super-resolution microscopy.
This review provides an up-to-date summary of fluorogenic probes applied to super-resolution imaging of cellular structures.
Herein we wish to fill this gap by providing the readers with an up-to-date summary of fluorogenic probes applied to super-resolution imaging of cellular structures.
Improved signal-to-noise from fluorogenic probes implies improved resolution in microscopy.
Fluorogenic probes efficiently reduce non-specific background signals, which often results in highly improved signal-to-noise ratios. Although this implies improved resolution...
QD-based imaging applications discussed in the review span super-resolution microscopy, single-particle tracking, in vitro cell and tissue imaging, and in vivo investigations.
different QD-based imaging applications will be discussed from the technological and the biological point of view, ranging from super-resolution microscopy and single-particle tracking over in vitro cell and tissue imaging to in vivo investigations.
Photoswitchable fluorescent proteins are used for reversible high-density data bio-storage, photochromic FRET, and super-resolution microscopy including point-scanning, structured illumination, and single molecule-based wide-field approaches.
These proteins offer the widest range of practical applications, including reversible high-density data bio-storage, photochromic FRET, and super-resolution microscopy by either point-scanning, structured illumination, or single molecule-based wide-field approaches.