A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope

This thesis focuses on the development of two novel imaging technologies which will serve as the basis for the future development of a two field-of-view or "Bi-FOV" endoscope capable of imaging at both microscopic and macroscopic regimes simultaneously. The goal of the Bi-FOV is to provide...

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Other Authors: Tkaczyk, Tomasz
Format: Others
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/1911/62034
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spelling ndltd-RICE-oai-scholarship.rice.edu-1911-620342013-05-01T03:46:37ZA real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscopePhysicsOpticsThis thesis focuses on the development of two novel imaging technologies which will serve as the basis for the future development of a two field-of-view or "Bi-FOV" endoscope capable of imaging at both microscopic and macroscopic regimes simultaneously. The goal of the Bi-FOV is to provide clinicians with a better tool for pre- and early cancer detection. The first technology developed makes it possible to obtain low cost, high performance, miniature optical systems for use in the microscopic portion of the Bi-FOV endoscope. The second technology developed for the Bi-FOV is a real-time snapshot hyperspectral endoscope called the IMS endoscope. The IMS endoscope is based on an image mapping technique which is capable of achieving high temporal and spatial resolution, excellent optical throughput, and low costs. The parallel, high throughput nature of this technique enables the device to operate at frame rates of 5.2 fps while collecting a 3D (x, y, gamma ) datacube of 350 x 350 x 48. We have successfully imaged tissue in vivo resolving tissue vasculature and oxy-hemoglobin which are important early cancer biomarkers.Tkaczyk, Tomasz2011-07-25T02:05:31Z2011-07-25T02:05:31Z2010ThesisTextapplication/pdfhttp://hdl.handle.net/1911/62034eng
collection NDLTD
language English
format Others
sources NDLTD
topic Physics
Optics
spellingShingle Physics
Optics
A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
description This thesis focuses on the development of two novel imaging technologies which will serve as the basis for the future development of a two field-of-view or "Bi-FOV" endoscope capable of imaging at both microscopic and macroscopic regimes simultaneously. The goal of the Bi-FOV is to provide clinicians with a better tool for pre- and early cancer detection. The first technology developed makes it possible to obtain low cost, high performance, miniature optical systems for use in the microscopic portion of the Bi-FOV endoscope. The second technology developed for the Bi-FOV is a real-time snapshot hyperspectral endoscope called the IMS endoscope. The IMS endoscope is based on an image mapping technique which is capable of achieving high temporal and spatial resolution, excellent optical throughput, and low costs. The parallel, high throughput nature of this technique enables the device to operate at frame rates of 5.2 fps while collecting a 3D (x, y, gamma ) datacube of 350 x 350 x 48. We have successfully imaged tissue in vivo resolving tissue vasculature and oxy-hemoglobin which are important early cancer biomarkers.
author2 Tkaczyk, Tomasz
author_facet Tkaczyk, Tomasz
title A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
title_short A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
title_full A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
title_fullStr A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
title_full_unstemmed A real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (Bi-FOV) endoscope
title_sort real-time snapshot hyperspectral endoscope and miniature endomicroscopy objectives for a two field-of-view (bi-fov) endoscope
publishDate 2011
url http://hdl.handle.net/1911/62034
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