ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light microscopy suffers from limited resolution. A new method for fluorescence imaging has been developed that can obtain spatial distributions of large numbers of fluorescent molecules on length scales shorter than the classical diffraction limit. Fluorescence photoactivation localization microscopy (FPALM) analyzes thousands of single fluorophores per acquisition, localizing small numbers of them at a time, at low excitation intensity. To control the number of visible fluorophores in the field of view and ensure that optically active molecules are separated by much more than the width of the point spread function, photoactivatable fluorescent mole...
Imaging volumes as thick as whole cells at three-dimensional (3D) super-resolution is required to re...
This dissertation presents techniques for localizing and quantifying fluorophores in biological imag...
Reviewsingle molecule localizations. These capabilities are achieved because PA-FPs undergo pronounc...
ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light mi...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
Diffraction limits the biological structures that can be imaged by normal light microscopy. However,...
Applicability to living specimens and genetically encodable tagging has made fluorescence microscopy...
Due to the diffraction limit of light, the resolution of fluorescence light microscopy is limited to...
Fluorescence photoactivation localization microscopy (FPALM) images biological structures with subdi...
<div><p>Localization microscopy can image nanoscale cellular details. To address biological question...
Fluorescence microscopy has been one of the breakthroughs in biological imaging. This technique take...
Sub-diffraction-limit imaging can be achieved by sequential localization of photoactivatable fluorop...
International audienceFor over a decade fluorescence microscopy has demonstrated the capacity to ach...
The phenomenon of diffraction limits the resolution in fluorescence imaging. While biological struct...
Imaging volumes as thick as whole cells at three-dimensional (3D) super-resolution is required to re...
This dissertation presents techniques for localizing and quantifying fluorophores in biological imag...
Reviewsingle molecule localizations. These capabilities are achieved because PA-FPs undergo pronounc...
ABSTRACT Biological structures span many orders of magnitude in size, but far-field visible light mi...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
AbstractBiological structures span many orders of magnitude in size, but far-field visible light mic...
Diffraction limits the biological structures that can be imaged by normal light microscopy. However,...
Applicability to living specimens and genetically encodable tagging has made fluorescence microscopy...
Due to the diffraction limit of light, the resolution of fluorescence light microscopy is limited to...
Fluorescence photoactivation localization microscopy (FPALM) images biological structures with subdi...
<div><p>Localization microscopy can image nanoscale cellular details. To address biological question...
Fluorescence microscopy has been one of the breakthroughs in biological imaging. This technique take...
Sub-diffraction-limit imaging can be achieved by sequential localization of photoactivatable fluorop...
International audienceFor over a decade fluorescence microscopy has demonstrated the capacity to ach...
The phenomenon of diffraction limits the resolution in fluorescence imaging. While biological struct...
Imaging volumes as thick as whole cells at three-dimensional (3D) super-resolution is required to re...
This dissertation presents techniques for localizing and quantifying fluorophores in biological imag...
Reviewsingle molecule localizations. These capabilities are achieved because PA-FPs undergo pronounc...