Integrated single- and two-photon light sheet microscopy using accelerating beams

Abstract We demonstrate the first light sheet microscope using propagation invariant, accelerating Airy beams that operates both in single- and two-photon modes. The use of the Airy beam permits us to develop an ultra compact, high resolution light sheet system without beam scanning. In two-photon m...

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Autores principales: Peeter Piksarv, Dominik Marti, Tuan Le, Angelika Unterhuber, Lindsey H. Forbes, Melissa R. Andrews, Andreas Stingl, Wolfgang Drexler, Peter E. Andersen, Kishan Dholakia
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/274bf661225845a69183481f7c6f19ab
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spelling oai:doaj.org-article:274bf661225845a69183481f7c6f19ab2021-12-02T16:05:58ZIntegrated single- and two-photon light sheet microscopy using accelerating beams10.1038/s41598-017-01543-42045-2322https://doaj.org/article/274bf661225845a69183481f7c6f19ab2017-05-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-01543-4https://doaj.org/toc/2045-2322Abstract We demonstrate the first light sheet microscope using propagation invariant, accelerating Airy beams that operates both in single- and two-photon modes. The use of the Airy beam permits us to develop an ultra compact, high resolution light sheet system without beam scanning. In two-photon mode, an increase in the field of view over the use of a standard Gaussian beam by a factor of six is demonstrated. This implementation for light sheet microscopy opens up new possibilities across a wide range of biomedical applications, especially for the study of neuronal processes.Peeter PiksarvDominik MartiTuan LeAngelika UnterhuberLindsey H. ForbesMelissa R. AndrewsAndreas StinglWolfgang DrexlerPeter E. AndersenKishan DholakiaNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Peeter Piksarv
Dominik Marti
Tuan Le
Angelika Unterhuber
Lindsey H. Forbes
Melissa R. Andrews
Andreas Stingl
Wolfgang Drexler
Peter E. Andersen
Kishan Dholakia
Integrated single- and two-photon light sheet microscopy using accelerating beams
description Abstract We demonstrate the first light sheet microscope using propagation invariant, accelerating Airy beams that operates both in single- and two-photon modes. The use of the Airy beam permits us to develop an ultra compact, high resolution light sheet system without beam scanning. In two-photon mode, an increase in the field of view over the use of a standard Gaussian beam by a factor of six is demonstrated. This implementation for light sheet microscopy opens up new possibilities across a wide range of biomedical applications, especially for the study of neuronal processes.
format article
author Peeter Piksarv
Dominik Marti
Tuan Le
Angelika Unterhuber
Lindsey H. Forbes
Melissa R. Andrews
Andreas Stingl
Wolfgang Drexler
Peter E. Andersen
Kishan Dholakia
author_facet Peeter Piksarv
Dominik Marti
Tuan Le
Angelika Unterhuber
Lindsey H. Forbes
Melissa R. Andrews
Andreas Stingl
Wolfgang Drexler
Peter E. Andersen
Kishan Dholakia
author_sort Peeter Piksarv
title Integrated single- and two-photon light sheet microscopy using accelerating beams
title_short Integrated single- and two-photon light sheet microscopy using accelerating beams
title_full Integrated single- and two-photon light sheet microscopy using accelerating beams
title_fullStr Integrated single- and two-photon light sheet microscopy using accelerating beams
title_full_unstemmed Integrated single- and two-photon light sheet microscopy using accelerating beams
title_sort integrated single- and two-photon light sheet microscopy using accelerating beams
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/274bf661225845a69183481f7c6f19ab
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AT dominikmarti integratedsingleandtwophotonlightsheetmicroscopyusingacceleratingbeams
AT tuanle integratedsingleandtwophotonlightsheetmicroscopyusingacceleratingbeams
AT angelikaunterhuber integratedsingleandtwophotonlightsheetmicroscopyusingacceleratingbeams
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