MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope

Minimal photon fluxes (MINFLUX) has enabled molecule-scale resolution in fluorescence microscopy but this had not been shown in standard, broadly applicable microscopy platforms. Here the authors report a solution to allow normal fluorescence microscopy while also providing 1-3 nm 3D resolution.

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Autores principales: Roman Schmidt, Tobias Weihs, Christian A. Wurm, Isabelle Jansen, Jasmin Rehman, Steffen J. Sahl, Stefan W. Hell
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/dc887fa2587b4746875369d1a3177bc1
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spelling oai:doaj.org-article:dc887fa2587b4746875369d1a3177bc12021-12-02T13:33:04ZMINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope10.1038/s41467-021-21652-z2041-1723https://doaj.org/article/dc887fa2587b4746875369d1a3177bc12021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21652-zhttps://doaj.org/toc/2041-1723Minimal photon fluxes (MINFLUX) has enabled molecule-scale resolution in fluorescence microscopy but this had not been shown in standard, broadly applicable microscopy platforms. Here the authors report a solution to allow normal fluorescence microscopy while also providing 1-3 nm 3D resolution.Roman SchmidtTobias WeihsChristian A. WurmIsabelle JansenJasmin RehmanSteffen J. SahlStefan W. HellNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Roman Schmidt
Tobias Weihs
Christian A. Wurm
Isabelle Jansen
Jasmin Rehman
Steffen J. Sahl
Stefan W. Hell
MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
description Minimal photon fluxes (MINFLUX) has enabled molecule-scale resolution in fluorescence microscopy but this had not been shown in standard, broadly applicable microscopy platforms. Here the authors report a solution to allow normal fluorescence microscopy while also providing 1-3 nm 3D resolution.
format article
author Roman Schmidt
Tobias Weihs
Christian A. Wurm
Isabelle Jansen
Jasmin Rehman
Steffen J. Sahl
Stefan W. Hell
author_facet Roman Schmidt
Tobias Weihs
Christian A. Wurm
Isabelle Jansen
Jasmin Rehman
Steffen J. Sahl
Stefan W. Hell
author_sort Roman Schmidt
title MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
title_short MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
title_full MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
title_fullStr MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
title_full_unstemmed MINFLUX nanometer-scale 3D imaging and microsecond-range tracking on a common fluorescence microscope
title_sort minflux nanometer-scale 3d imaging and microsecond-range tracking on a common fluorescence microscope
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/dc887fa2587b4746875369d1a3177bc1
work_keys_str_mv AT romanschmidt minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT tobiasweihs minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT christianawurm minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT isabellejansen minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT jasminrehman minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT steffenjsahl minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
AT stefanwhell minfluxnanometerscale3dimagingandmicrosecondrangetrackingonacommonfluorescencemicroscope
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