Foundations of STED microscopy

This chapter presents the foundations of STED microscopy with a comparison to its generalization Resolft microscopy and to stochastic imaging methods (PALM, STORM, FPALM, and alike). The first section reviews the advantages of optical microscopy, explains the diffraction limit, and shows how the cla...

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書誌詳細
主要な著者: Lauterbach, M, Eggeling, C
フォーマット: Journal article
言語:English
出版事項: Humana Press Inc. 2014
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author Lauterbach, M
Eggeling, C
author_facet Lauterbach, M
Eggeling, C
author_sort Lauterbach, M
collection OXFORD
description This chapter presents the foundations of STED microscopy with a comparison to its generalization Resolft microscopy and to stochastic imaging methods (PALM, STORM, FPALM, and alike). The first section reviews the advantages of optical microscopy, explains the diffraction limit, and shows how the classical resolution limit was finally broken. It also reviews some of the achievements in super-resolution imaging. The second section explains in depth the principle of STED microscopy and highlights some special STED modalities like the use of continuous wave lasers, time-gating, fast imaging with up to 200 frames per second, and combination with fluorescence correlation spectroscopy. The third section treats some aspects of resolution in the presence of noise, especially in the scope of high-resolution imaging. © 2014 Springer Science+Business Media, LLC.
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spelling oxford-uuid:316a1307-3d55-4a20-9e80-6adbfc7b4f452022-03-26T13:07:52ZFoundations of STED microscopyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:316a1307-3d55-4a20-9e80-6adbfc7b4f45EnglishSymplectic Elements at OxfordHumana Press Inc.2014Lauterbach, MEggeling, CThis chapter presents the foundations of STED microscopy with a comparison to its generalization Resolft microscopy and to stochastic imaging methods (PALM, STORM, FPALM, and alike). The first section reviews the advantages of optical microscopy, explains the diffraction limit, and shows how the classical resolution limit was finally broken. It also reviews some of the achievements in super-resolution imaging. The second section explains in depth the principle of STED microscopy and highlights some special STED modalities like the use of continuous wave lasers, time-gating, fast imaging with up to 200 frames per second, and combination with fluorescence correlation spectroscopy. The third section treats some aspects of resolution in the presence of noise, especially in the scope of high-resolution imaging. © 2014 Springer Science+Business Media, LLC.
spellingShingle Lauterbach, M
Eggeling, C
Foundations of STED microscopy
title Foundations of STED microscopy
title_full Foundations of STED microscopy
title_fullStr Foundations of STED microscopy
title_full_unstemmed Foundations of STED microscopy
title_short Foundations of STED microscopy
title_sort foundations of sted microscopy
work_keys_str_mv AT lauterbachm foundationsofstedmicroscopy
AT eggelingc foundationsofstedmicroscopy