Multicolour fluorescence imaging by STimulated Emission Depletion (STED) superresolution microscopy with doughnut-shaped STED laser beams based on different wavelengths for each colour channel requires precise image registration. This is especially important when STED imaging is used for colocalisation studies of two or more native proteins in biological specimens to analyse nanometric subcellular spatial arrangements. We developed a robust postprocessing image registration protocol, with the aim to verify and ultimately optimise multicolour STED image quality. Importantly, this protocol will support any subsequent quantitative localisation analysis at nanometric scales. Henceforth, using an approach that registers each colour channel prese...
<div><p>Fluorescence superresolution (SR) microscopy, or fluorescence nanoscopy, provides nanometer ...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...
Multicolour fluorescence imaging by STimulated Emission Depletion (STED) superresolution microscopy ...
Fluorescent microscopy has become an essential tool to study biological molecules, pathways and even...
This thesis focuses on super resolution STED optical imaging. STED provides a wealth of new informat...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
Superresolution fluorescence microscopy of multiple fluorophores still requires development. Here we...
Optical resolution has always been restricted by the Ernst diffraction limit, which states that lens...
Fluorescence superresolution (SR) microscopy, or fluorescence nanoscopy, provides nanometer scale de...
Both the branches of high resolution nanoscopy coordinate targeted and coordinate stochastic methods...
Super-resolution microscopy has significantly expanded the scope of application of biological micros...
ABSTRACT The advent of superresolution microscopy has ope the nanoscale inside living biological spe...
Superresolution fluorescence microscopy of multiple fluorophores still requires development. Here we...
<div><p>Fluorescence superresolution (SR) microscopy, or fluorescence nanoscopy, provides nanometer ...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...
Multicolour fluorescence imaging by STimulated Emission Depletion (STED) superresolution microscopy ...
Fluorescent microscopy has become an essential tool to study biological molecules, pathways and even...
This thesis focuses on super resolution STED optical imaging. STED provides a wealth of new informat...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
The fundamental barrier of traditional microscopy has always been the Abbe limit. Diffraction has se...
Superresolution fluorescence microscopy of multiple fluorophores still requires development. Here we...
Optical resolution has always been restricted by the Ernst diffraction limit, which states that lens...
Fluorescence superresolution (SR) microscopy, or fluorescence nanoscopy, provides nanometer scale de...
Both the branches of high resolution nanoscopy coordinate targeted and coordinate stochastic methods...
Super-resolution microscopy has significantly expanded the scope of application of biological micros...
ABSTRACT The advent of superresolution microscopy has ope the nanoscale inside living biological spe...
Superresolution fluorescence microscopy of multiple fluorophores still requires development. Here we...
<div><p>Fluorescence superresolution (SR) microscopy, or fluorescence nanoscopy, provides nanometer ...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...
Researchers have a growing need to push optical microscopy beyond the diffraction limit to answer ke...