4.6 Article

Scanning all-fiber-optic endomicroscopy system for 3D nonlinear optical imaging of biological tissues

Journal

OPTICS EXPRESS
Volume 17, Issue 10, Pages 7907-7915

Publisher

OPTICAL SOC AMER
DOI: 10.1364/OE.17.007907

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Funding

  1. National Institutes of Health [EB003284, CA120480, CA116442]
  2. National Science Foundation
  3. Directorate For Engineering
  4. Div Of Chem, Bioeng, Env, & Transp Sys [0940321] Funding Source: National Science Foundation

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An extremely compact all-fiber-optic scanning endomicroscopy system was developed for two-photon fluorescence (TPF) and second harmonic generation (SHG) imaging of biological samples. A conventional double-clad fiber (DCF) was employed in the endomicroscope for single-mode femtosecond pulse delivery, multimode nonlinear optical signals collection and fast two-dimensional scanning. A single photonic bandgap fiber (PBF) with negative group velocity dispersion at two-photon excitation wavelength (i.e. similar to 810 nm) was used for pulse prechirping in replacement of a bulky grating/lens-based pulse stretcher. The combined use of DCF and PBF in the endomicroscopy system made the endomicroscope basically a plug-and-play unit. The excellent imaging ability of the extremely compact all-fiber-optic nonlinear optical endomicroscopy system was demonstrated by SHG imaging of rat tail tendon and depth-resolved TPF imaging of epithelial tissues stained with acridine orange. The preliminary results suggested the promising potential of this extremely compact all-fiber-optic endomicroscopy system for real-time assessment of both epithelial and stromal structures in luminal organs. (C) 2009 Optical Society of America

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