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Fluorescence and optical-resolution photoacoustic imaging through capillary waveguides

  • Nicolino Stasio
  • , Atsushi Shibukawa
  • , Ioannis N. Papadopoulos
  • , Salma Farahi
  • , Olivier Simandoux
  • , Jean Pierre Huignard
  • , Emmanuel Bossy
  • , Christophe Moser
  • , Demetri Psaltis

研究成果

抄録

Endoscopy can be used to obtain high-resolution images at large depths in biological tissues. Usually endoscopic devices have a diameter ranging from 1 to few millimeters. Using digital phase conjugation, it is possible to adapt ultrathin multimode fibers to endoscopic purposes. Recently, we demonstrated that a 330 μm diameter, water-filled silica capillary waveguide can guide high frequency ultrasound waves through a 3 cm thick fat layer, allowing optical resolution photoacoustic imaging. Here we demonstrate that using digital phase conjugation, the same water-filled capillary waveguide (3 cm long) can be used as an endoscopic probe to obtain both fluorescence and optical resolution photoacoustic imaging, with no optical or acoustic elements at the tip of the waveguide. We study the consequences of using digital phase conjugation combined with a capillary waveguide and we conclude with possible future improvements of our endoscopic approach.

本文言語English
ホスト出版物のタイトルAdaptive Optics and Wavefront Control for Biological Systems II
編集者Sylvain Gigan, Thomas G. Bifano, Joel Kubby
出版社SPIE
ISBN(電子版)9781628419511
DOI
出版ステータスPublished - 2016
外部発表はい
イベントAdaptive Optics and Wavefront Control for Biological Systems II - San Francisco
継続期間: 2月 13 20162月 15 2016

出版物シリーズ

名前Progress in Biomedical Optics and Imaging - Proceedings of SPIE
9717
ISSN(印刷版)1605-7422

Other

OtherAdaptive Optics and Wavefront Control for Biological Systems II
国/地域United States
CitySan Francisco
Period2/13/162/15/16

ASJC Scopus subject areas

  • 電子材料、光学材料、および磁性材料
  • 原子分子物理学および光学
  • 生体材料
  • 放射線学、核医学およびイメージング

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