Resolution doubling in fluorescence microscopy with confocal spinning-disk image scanning microscopy

We demonstrate how a conventional confocal spinning-disk (CSD) microscope can be converted into a doubly resolving image scanning microscopy (ISM) system without changing any part of its optical or mechanical elements. Making use of the intrinsic properties of a CSD microscope, we illuminate strobos...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2013-12, Vol.110 (52), p.21000-21005
Hauptverfasser: Schulz, Olaf, Pieper, Christoph, Clever, Michaela, Pfaff, Janine, Ruhlandt, Aike, Kehlenbach, Ralph H., Wouters, Fred S., Großhans, Jörg, Bunt, Gertrude, Enderlein, Jörg
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Sprache:eng
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Zusammenfassung:We demonstrate how a conventional confocal spinning-disk (CSD) microscope can be converted into a doubly resolving image scanning microscopy (ISM) system without changing any part of its optical or mechanical elements. Making use of the intrinsic properties of a CSD microscope, we illuminate stroboscopically, generating an array of excitation foci that are moved across the sample by varying the phase between stroboscopic excitation and rotation of the spinning disk. ISM then generates an image with nearly doubled resolution. Using conventional fluorophores, we have imaged single nuclear pore complexes in the nuclear membrane and aggregates of GFP-conjugated Tau protein in three dimensions. Multicolor ISM was shown on cytoskeletal-associated structural proteins and on 3D four-color images including MitoTracker and Hoechst staining. The simple adaptation of conventional CSD equipment allows superresolution investigations of a broad variety of cell biological questions.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1315858110