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Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging

Single-molecule super-resolution microscopy allows imaging of fluorescently-tagged proteins in live cells with a precision well below that of the diffraction limit. Here, we demonstrate 3D sectioning with single-molecule super-resolution microscopy by making use of the fitting information that is us...

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Autores principales: Palayret, Matthieu, Armes, Helen, Basu, Srinjan, Watson, Adam T., Herbert, Alex, Lando, David, Etheridge, Thomas J., Endesfelder, Ulrike, Heilemann, Mike, Laue, Ernest, Carr, Antony M., Klenerman, David, Lee, Steven F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4401716/
https://www.ncbi.nlm.nih.gov/pubmed/25884495
http://dx.doi.org/10.1371/journal.pone.0125438
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author Palayret, Matthieu
Armes, Helen
Basu, Srinjan
Watson, Adam T.
Herbert, Alex
Lando, David
Etheridge, Thomas J.
Endesfelder, Ulrike
Heilemann, Mike
Laue, Ernest
Carr, Antony M.
Klenerman, David
Lee, Steven F.
author_facet Palayret, Matthieu
Armes, Helen
Basu, Srinjan
Watson, Adam T.
Herbert, Alex
Lando, David
Etheridge, Thomas J.
Endesfelder, Ulrike
Heilemann, Mike
Laue, Ernest
Carr, Antony M.
Klenerman, David
Lee, Steven F.
author_sort Palayret, Matthieu
collection PubMed
description Single-molecule super-resolution microscopy allows imaging of fluorescently-tagged proteins in live cells with a precision well below that of the diffraction limit. Here, we demonstrate 3D sectioning with single-molecule super-resolution microscopy by making use of the fitting information that is usually discarded to reject fluorophores that emit from above or below a virtual-'light-sheet', a thin volume centred on the focal plane of the microscope. We describe an easy-to-use routine (implemented as an open-source ImageJ plug-in) to quickly analyse a calibration sample to define and use such a virtual light-sheet. In addition, the plug-in is easily usable on almost any existing 2D super-resolution instrumentation. This optical sectioning of super-resolution images is achieved by applying well-characterised width and amplitude thresholds to diffraction-limited spots that can be used to tune the thickness of the virtual light-sheet. This allows qualitative and quantitative imaging improvements: by rejecting out-of-focus fluorophores, the super-resolution image gains contrast and local features may be revealed; by retaining only fluorophores close to the focal plane, virtual-'light-sheet' single-molecule localisation microscopy improves the probability that all emitting fluorophores will be detected, fitted and quantitatively evaluated.
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spelling pubmed-44017162015-04-21 Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging Palayret, Matthieu Armes, Helen Basu, Srinjan Watson, Adam T. Herbert, Alex Lando, David Etheridge, Thomas J. Endesfelder, Ulrike Heilemann, Mike Laue, Ernest Carr, Antony M. Klenerman, David Lee, Steven F. PLoS One Research Article Single-molecule super-resolution microscopy allows imaging of fluorescently-tagged proteins in live cells with a precision well below that of the diffraction limit. Here, we demonstrate 3D sectioning with single-molecule super-resolution microscopy by making use of the fitting information that is usually discarded to reject fluorophores that emit from above or below a virtual-'light-sheet', a thin volume centred on the focal plane of the microscope. We describe an easy-to-use routine (implemented as an open-source ImageJ plug-in) to quickly analyse a calibration sample to define and use such a virtual light-sheet. In addition, the plug-in is easily usable on almost any existing 2D super-resolution instrumentation. This optical sectioning of super-resolution images is achieved by applying well-characterised width and amplitude thresholds to diffraction-limited spots that can be used to tune the thickness of the virtual light-sheet. This allows qualitative and quantitative imaging improvements: by rejecting out-of-focus fluorophores, the super-resolution image gains contrast and local features may be revealed; by retaining only fluorophores close to the focal plane, virtual-'light-sheet' single-molecule localisation microscopy improves the probability that all emitting fluorophores will be detected, fitted and quantitatively evaluated. Public Library of Science 2015-04-17 /pmc/articles/PMC4401716/ /pubmed/25884495 http://dx.doi.org/10.1371/journal.pone.0125438 Text en © 2015 Palayret et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Palayret, Matthieu
Armes, Helen
Basu, Srinjan
Watson, Adam T.
Herbert, Alex
Lando, David
Etheridge, Thomas J.
Endesfelder, Ulrike
Heilemann, Mike
Laue, Ernest
Carr, Antony M.
Klenerman, David
Lee, Steven F.
Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title_full Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title_fullStr Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title_full_unstemmed Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title_short Virtual-'Light-Sheet' Single-Molecule Localisation Microscopy Enables Quantitative Optical Sectioning for Super-Resolution Imaging
title_sort virtual-'light-sheet' single-molecule localisation microscopy enables quantitative optical sectioning for super-resolution imaging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4401716/
https://www.ncbi.nlm.nih.gov/pubmed/25884495
http://dx.doi.org/10.1371/journal.pone.0125438
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