Compact two-photon fluorescence microscope based on a single-mode fiber coupler
- 15 June 2002
- journal article
- Published by Optica Publishing Group in Optics Letters
- Vol. 27 (12) , 1031-1033
- https://doi.org/10.1364/ol.27.001031
Abstract
We present a two-photon fluorescence microscope based on a three-port single-mode optical fiber coupler. It is found that the coupler behaves as a low-pass filter that can deliver an ultrashort-pulsed laser beam of as much as 150 mW of power in the wavelength range from 770 to 870 nm as well as collect a two-photon fluorescence signal in the visible range. As a result of using the fiber coupler, the new two-photon imaging system exhibts a number of advantages, including a compact arrangement, freedom from vibration from lasers and electronic devices, self-alignment, reduction of multiple scattering, and an enhanced optical sectioning effect. The effectiveness of the new instrument is demonstrated with a set of three-dimensional images of biological samples. This instrument may make two-photon fluorescence endoscopy possible for in vivo medical applications.Keywords
This publication has 13 references indexed in Scilit:
- Resolution improvement in two-photon fluorescence microscopy with a single-mode fiberApplied Optics, 2002
- Fibre-optic double-pass confocal microscopyOptics & Laser Technology, 1998
- Cell damage by near-IR microbeamsNature, 1995
- Single-mode fibers used as confocal microscope pinholesApplied Optics, 1992
- Image formation in a fiber-optical confocal scanning microscopeJournal of the Optical Society of America A, 1991
- Confocal scanning optical microscope using single-mode fiber for signal detectionApplied Optics, 1991
- Confocal compact scanning optical microscope based on compact disc technologyApplied Optics, 1991
- A fibre‐optic 3‐D microscope with high depth sensitivityJournal of Microscopy, 1990
- Two-Photon Laser Scanning Fluorescence MicroscopyScience, 1990
- Fibre-optic scanning differential interference contrast optical microscopeElectronics Letters, 1986