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Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation

Multiphoton microscopy (MPM) has the capacity to record second-harmonic generation (SHG) and endogenous two-photon excitation fluorescence (2PEF) signals emitted from biological tissues. The development of fiber-based miniaturized endomicroscopes delivering pulses in the femtosecond range will allow...

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Autores principales: Garofalakis, Anikitos, Kruglik, Sergei G., Mansuryan, Tigran, Gillibert, André, Thiberville, Luc, Louradour, Frédéric, Vever-Bizet, Christine, Bourg-Heckly, Genevieve
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society of Photo-Optical Instrumentation Engineers 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000885/
https://www.ncbi.nlm.nih.gov/pubmed/31646840
http://dx.doi.org/10.1117/1.JBO.24.10.106004
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author Garofalakis, Anikitos
Kruglik, Sergei G.
Mansuryan, Tigran
Gillibert, André
Thiberville, Luc
Louradour, Frédéric
Vever-Bizet, Christine
Bourg-Heckly, Genevieve
author_facet Garofalakis, Anikitos
Kruglik, Sergei G.
Mansuryan, Tigran
Gillibert, André
Thiberville, Luc
Louradour, Frédéric
Vever-Bizet, Christine
Bourg-Heckly, Genevieve
author_sort Garofalakis, Anikitos
collection PubMed
description Multiphoton microscopy (MPM) has the capacity to record second-harmonic generation (SHG) and endogenous two-photon excitation fluorescence (2PEF) signals emitted from biological tissues. The development of fiber-based miniaturized endomicroscopes delivering pulses in the femtosecond range will allow the transfer of MPM to clinical endoscopy. We present real-time SHG and 2PEF ex vivo images using an endomicroscope, which totally complies with clinical endoscopy regulations. This system is based on the proximal scanning of a commercial multicore image guide (IG). For understanding the inhomogeneities of the recorded images, we quantitatively characterize the IG at the single-core level during nonlinear excitation. The obtained results suggest that these inhomogeneities originate from the variable core geometries that, therefore, exhibit variable nonlinear and dispersive properties. Finally, we propose a method based on modulation of dispersion precompensation to address the image inhomogeneity issue and, as a proof of concept, we demonstrate its capability to improve the nonlinear image quality.
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spelling pubmed-70008852020-02-10 Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation Garofalakis, Anikitos Kruglik, Sergei G. Mansuryan, Tigran Gillibert, André Thiberville, Luc Louradour, Frédéric Vever-Bizet, Christine Bourg-Heckly, Genevieve J Biomed Opt Imaging Multiphoton microscopy (MPM) has the capacity to record second-harmonic generation (SHG) and endogenous two-photon excitation fluorescence (2PEF) signals emitted from biological tissues. The development of fiber-based miniaturized endomicroscopes delivering pulses in the femtosecond range will allow the transfer of MPM to clinical endoscopy. We present real-time SHG and 2PEF ex vivo images using an endomicroscope, which totally complies with clinical endoscopy regulations. This system is based on the proximal scanning of a commercial multicore image guide (IG). For understanding the inhomogeneities of the recorded images, we quantitatively characterize the IG at the single-core level during nonlinear excitation. The obtained results suggest that these inhomogeneities originate from the variable core geometries that, therefore, exhibit variable nonlinear and dispersive properties. Finally, we propose a method based on modulation of dispersion precompensation to address the image inhomogeneity issue and, as a proof of concept, we demonstrate its capability to improve the nonlinear image quality. Society of Photo-Optical Instrumentation Engineers 2019-10-23 2019-10 /pmc/articles/PMC7000885/ /pubmed/31646840 http://dx.doi.org/10.1117/1.JBO.24.10.106004 Text en © The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
spellingShingle Imaging
Garofalakis, Anikitos
Kruglik, Sergei G.
Mansuryan, Tigran
Gillibert, André
Thiberville, Luc
Louradour, Frédéric
Vever-Bizet, Christine
Bourg-Heckly, Genevieve
Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title_full Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title_fullStr Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title_full_unstemmed Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title_short Characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
title_sort characterization of a multicore fiber image guide for nonlinear endoscopic imaging using two-photon fluorescence and second-harmonic generation
topic Imaging
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000885/
https://www.ncbi.nlm.nih.gov/pubmed/31646840
http://dx.doi.org/10.1117/1.JBO.24.10.106004
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