Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations

Super-resolution fluorescent imaging typically makes use of intense phototoxic illumination. Here the authors achieve live-cell super-resolution imaging using low-illumination standard microscopes with the aid of a new analytical approach called Super-Resolution Radial Fluctuations (SRRF), provided...

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Autores principales: Nils Gustafsson, Siân Culley, George Ashdown, Dylan M. Owen, Pedro Matos Pereira, Ricardo Henriques
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/3f58ca8cc60e4b8db69d99381d87fa14
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spelling oai:doaj.org-article:3f58ca8cc60e4b8db69d99381d87fa142021-12-02T16:49:41ZFast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations10.1038/ncomms124712041-1723https://doaj.org/article/3f58ca8cc60e4b8db69d99381d87fa142016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12471https://doaj.org/toc/2041-1723Super-resolution fluorescent imaging typically makes use of intense phototoxic illumination. Here the authors achieve live-cell super-resolution imaging using low-illumination standard microscopes with the aid of a new analytical approach called Super-Resolution Radial Fluctuations (SRRF), provided as an ImageJ plugin.Nils GustafssonSiân CulleyGeorge AshdownDylan M. OwenPedro Matos PereiraRicardo HenriquesNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nils Gustafsson
Siân Culley
George Ashdown
Dylan M. Owen
Pedro Matos Pereira
Ricardo Henriques
Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
description Super-resolution fluorescent imaging typically makes use of intense phototoxic illumination. Here the authors achieve live-cell super-resolution imaging using low-illumination standard microscopes with the aid of a new analytical approach called Super-Resolution Radial Fluctuations (SRRF), provided as an ImageJ plugin.
format article
author Nils Gustafsson
Siân Culley
George Ashdown
Dylan M. Owen
Pedro Matos Pereira
Ricardo Henriques
author_facet Nils Gustafsson
Siân Culley
George Ashdown
Dylan M. Owen
Pedro Matos Pereira
Ricardo Henriques
author_sort Nils Gustafsson
title Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
title_short Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
title_full Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
title_fullStr Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
title_full_unstemmed Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations
title_sort fast live-cell conventional fluorophore nanoscopy with imagej through super-resolution radial fluctuations
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/3f58ca8cc60e4b8db69d99381d87fa14
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AT georgeashdown fastlivecellconventionalfluorophorenanoscopywithimagejthroughsuperresolutionradialfluctuations
AT dylanmowen fastlivecellconventionalfluorophorenanoscopywithimagejthroughsuperresolutionradialfluctuations
AT pedromatospereira fastlivecellconventionalfluorophorenanoscopywithimagejthroughsuperresolutionradialfluctuations
AT ricardohenriques fastlivecellconventionalfluorophorenanoscopywithimagejthroughsuperresolutionradialfluctuations
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