Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography

The optical design for a dual modality endoscope based on piezo scanning fiber technology is presented including a novel technique to combine forward-viewing navigation and side viewing OCT. Potential applications include navigating body lumens such as the fallopian tube, biliary ducts and cardiovas...

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Main Authors: Tate, Tyler H., McGregor, Davis, Barton, Jennifer K.
Other Authors: Univ Arizona, Coll Opt Sci
Language:en
Published: SPIE-INT SOC OPTICAL ENGINEERING 2017
Subjects:
Online Access:Tyler H. Tate ; Davis McGregor and Jennifer K. Barton " Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography ", Proc. SPIE 10040, Endoscopic Microscopy XII, 100400H (February 15, 2017); doi:10.1117/12.2271555; http://dx.doi.org/10.1117/12.2271555
http://hdl.handle.net/10150/624390
http://arizona.openrepository.com/arizona/handle/10150/624390
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6243902017-06-25T03:00:33Z Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography Tate, Tyler H. McGregor, Davis Barton, Jennifer K. Univ Arizona, Coll Opt Sci Univ Arizona, Biomed Engn College of Optical Sciences, The Univ. of Arizona (United States) The Univ. of Arizona (United States) College of Optical Sciences, The Univ. of Arizona (United States) endoscope Optical Coherence Tomography Fluorescence Cancer Ovary Bile Duct Piezo Scanning Rotationally Symmetric Reflection The optical design for a dual modality endoscope based on piezo scanning fiber technology is presented including a novel technique to combine forward-viewing navigation and side viewing OCT. Potential applications include navigating body lumens such as the fallopian tube, biliary ducts and cardiovascular system. A custom cover plate provides a rotationally symmetric double reflection of the OCT beam to deviate and focus the OCT beam out the side of the endoscope for cross-sectional imaging of the tubal lumen. Considerations in the choice of the scanning fiber are explored and a new technique to increase the divergence angle of the scanning fiber to improve system performance is presented. Resolution and the necessary scanning density requirements to achieve Nyquist sampling of the full image are considered. The novel optical design lays the groundwork for a new approach integrating side-viewing OCT into multimodality endoscopes for small lumen imaging. 2017-02-15 Article Tyler H. Tate ; Davis McGregor and Jennifer K. Barton " Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography ", Proc. SPIE 10040, Endoscopic Microscopy XII, 100400H (February 15, 2017); doi:10.1117/12.2271555; http://dx.doi.org/10.1117/12.2271555 0277-786X 10.1117/12.2271555 http://hdl.handle.net/10150/624390 http://arizona.openrepository.com/arizona/handle/10150/624390 ENDOSCOPIC MICROSCOPY XII en http://proceedings.spiedigitallibrary.org/proceeding.aspx?doi=10.1117/12.2271555 © 2017 SPIE SPIE-INT SOC OPTICAL ENGINEERING
collection NDLTD
language en
sources NDLTD
topic endoscope
Optical Coherence Tomography
Fluorescence
Cancer
Ovary
Bile Duct
Piezo Scanning
Rotationally Symmetric Reflection
spellingShingle endoscope
Optical Coherence Tomography
Fluorescence
Cancer
Ovary
Bile Duct
Piezo Scanning
Rotationally Symmetric Reflection
Tate, Tyler H.
McGregor, Davis
Barton, Jennifer K.
Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
description The optical design for a dual modality endoscope based on piezo scanning fiber technology is presented including a novel technique to combine forward-viewing navigation and side viewing OCT. Potential applications include navigating body lumens such as the fallopian tube, biliary ducts and cardiovascular system. A custom cover plate provides a rotationally symmetric double reflection of the OCT beam to deviate and focus the OCT beam out the side of the endoscope for cross-sectional imaging of the tubal lumen. Considerations in the choice of the scanning fiber are explored and a new technique to increase the divergence angle of the scanning fiber to improve system performance is presented. Resolution and the necessary scanning density requirements to achieve Nyquist sampling of the full image are considered. The novel optical design lays the groundwork for a new approach integrating side-viewing OCT into multimodality endoscopes for small lumen imaging.
author2 Univ Arizona, Coll Opt Sci
author_facet Univ Arizona, Coll Opt Sci
Tate, Tyler H.
McGregor, Davis
Barton, Jennifer K.
author Tate, Tyler H.
McGregor, Davis
Barton, Jennifer K.
author_sort Tate, Tyler H.
title Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
title_short Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
title_full Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
title_fullStr Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
title_full_unstemmed Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
title_sort single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography
publisher SPIE-INT SOC OPTICAL ENGINEERING
publishDate 2017
url Tyler H. Tate ; Davis McGregor and Jennifer K. Barton " Single lens system for forward-viewing navigation and scanning side-viewing optical coherence tomography ", Proc. SPIE 10040, Endoscopic Microscopy XII, 100400H (February 15, 2017); doi:10.1117/12.2271555; http://dx.doi.org/10.1117/12.2271555
http://hdl.handle.net/10150/624390
http://arizona.openrepository.com/arizona/handle/10150/624390
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AT bartonjenniferk singlelenssystemforforwardviewingnavigationandscanningsideviewingopticalcoherencetomography
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