Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept

An all-fiber based endoscopic probe using a double-core double-clad fiber demonstrates the potential for nonlinear imaging applications such as image-guided surgery and in vivo diagnostics.

Bibliographic Details
Main Authors: Ekaterina Pshenay-Severin, Hyeonsoo Bae, Karl Reichwald, Gregor Matz, Jörg Bierlich, Jens Kobelke, Adrian Lorenz, Anka Schwuchow, Tobias Meyer-Zedler, Michael Schmitt, Bernhard Messerschmidt, Juergen Popp
Format: Article
Language:English
Published: Nature Publishing Group 2021-10-01
Series:Light: Science & Applications
Online Access:https://doi.org/10.1038/s41377-021-00648-w
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author Ekaterina Pshenay-Severin
Hyeonsoo Bae
Karl Reichwald
Gregor Matz
Jörg Bierlich
Jens Kobelke
Adrian Lorenz
Anka Schwuchow
Tobias Meyer-Zedler
Michael Schmitt
Bernhard Messerschmidt
Juergen Popp
author_facet Ekaterina Pshenay-Severin
Hyeonsoo Bae
Karl Reichwald
Gregor Matz
Jörg Bierlich
Jens Kobelke
Adrian Lorenz
Anka Schwuchow
Tobias Meyer-Zedler
Michael Schmitt
Bernhard Messerschmidt
Juergen Popp
author_sort Ekaterina Pshenay-Severin
collection DOAJ
description An all-fiber based endoscopic probe using a double-core double-clad fiber demonstrates the potential for nonlinear imaging applications such as image-guided surgery and in vivo diagnostics.
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spelling doaj.art-774075bcba544c529ba7c86b620bd4342022-12-21T17:23:37ZengNature Publishing GroupLight: Science & Applications2047-75382021-10-0110111110.1038/s41377-021-00648-wMultimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical conceptEkaterina Pshenay-Severin0Hyeonsoo Bae1Karl Reichwald2Gregor Matz3Jörg Bierlich4Jens Kobelke5Adrian Lorenz6Anka Schwuchow7Tobias Meyer-Zedler8Michael Schmitt9Bernhard Messerschmidt10Juergen Popp11GRINTECH GmbHLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesGRINTECH GmbHGRINTECH GmbHLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesInstitute of Physical Chemistry and Abbe Center of Photonics, Friedrich Schiller University JenaGRINTECH GmbHLeibniz Institute of Photonic Technology, Member of Leibniz Health TechnologiesAn all-fiber based endoscopic probe using a double-core double-clad fiber demonstrates the potential for nonlinear imaging applications such as image-guided surgery and in vivo diagnostics.https://doi.org/10.1038/s41377-021-00648-w
spellingShingle Ekaterina Pshenay-Severin
Hyeonsoo Bae
Karl Reichwald
Gregor Matz
Jörg Bierlich
Jens Kobelke
Adrian Lorenz
Anka Schwuchow
Tobias Meyer-Zedler
Michael Schmitt
Bernhard Messerschmidt
Juergen Popp
Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
Light: Science & Applications
title Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
title_full Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
title_fullStr Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
title_full_unstemmed Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
title_short Multimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept
title_sort multimodal nonlinear endomicroscopic imaging probe using a double core double clad fiber and focus combining micro optical concept
url https://doi.org/10.1038/s41377-021-00648-w
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