Multimodal multispectral optical endoscopic imaging for biomedical applications

Optical imaging is an emerging field of clinical diagnostics that can address the growing medical need for early cancer detection and diagnosis. Various human cancers are amenable to better prognosis and patient survival if found and treated during early disease onset. Besides providing wide-field,...

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Main Author: Koh, Kevin Rongsheng
Other Authors: Elson, Dan ; Yang, Guang-Zhong
Published: Imperial College London 2011
Subjects:
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.528677
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spelling ndltd-bl.uk-oai-ethos.bl.uk-5286772017-08-30T03:18:08ZMultimodal multispectral optical endoscopic imaging for biomedical applicationsKoh, Kevin RongshengElson, Dan ; Yang, Guang-Zhong2011Optical imaging is an emerging field of clinical diagnostics that can address the growing medical need for early cancer detection and diagnosis. Various human cancers are amenable to better prognosis and patient survival if found and treated during early disease onset. Besides providing wide-field, macroscopic diagnostic information similar to existing clinical imaging techniques, optical imaging modalities have the added advantage of microscopic, high resolution cellular-level imaging from in vivo tissues in real time. This comprehensive imaging approach to cancer detection and the possibility of performing an ‘optical biopsy’ without tissue removal has led to growing interest in the field with numerous techniques under investigation. Three optical techniques are discussed in this thesis, namely multispectral fluorescence imaging (MFI), hyperspectral reflectance imaging (HRI) and fluorescence confocal endomicroscopy (FCE). MFI and HRI are novel endoscopic imaging-based extensions of single point detection techniques, such as laser induced fluorescence spectroscopy and diffuse reflectance spectroscopy. This results in the acquisition of spectral data in an intuitive imaging format that allows for quantitative evaluation of tissue disease states. We demonstrate MFI and HRI on fluorophores, tissue phantoms and ex vivo tissues and present the results as an RGB colour image for more intuitive assessment. This follows dimensionality reduction of the acquired spectral data with a fixed-reference isomap diagnostic algorithm to extract only the most meaningful data parameters. FCE is a probe-based point imaging technique offering confocal detection in vivo with almost histology-grade images. We perform FCE imaging on chemotherapy-treated in vitro human ovarian cancer cells, ex vivo human cancer tissues and photosensitiser-treated in vivo murine tumours to show the enhanced detection capabilities of the technique. Finally, the three modalities are applied in combination to demonstrate an optical viewfinder approach as a possible minimally-invasive imaging method for early cancer detection and diagnosis.615.84Imperial College Londonhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.528677http://hdl.handle.net/10044/1/6330Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 615.84
spellingShingle 615.84
Koh, Kevin Rongsheng
Multimodal multispectral optical endoscopic imaging for biomedical applications
description Optical imaging is an emerging field of clinical diagnostics that can address the growing medical need for early cancer detection and diagnosis. Various human cancers are amenable to better prognosis and patient survival if found and treated during early disease onset. Besides providing wide-field, macroscopic diagnostic information similar to existing clinical imaging techniques, optical imaging modalities have the added advantage of microscopic, high resolution cellular-level imaging from in vivo tissues in real time. This comprehensive imaging approach to cancer detection and the possibility of performing an ‘optical biopsy’ without tissue removal has led to growing interest in the field with numerous techniques under investigation. Three optical techniques are discussed in this thesis, namely multispectral fluorescence imaging (MFI), hyperspectral reflectance imaging (HRI) and fluorescence confocal endomicroscopy (FCE). MFI and HRI are novel endoscopic imaging-based extensions of single point detection techniques, such as laser induced fluorescence spectroscopy and diffuse reflectance spectroscopy. This results in the acquisition of spectral data in an intuitive imaging format that allows for quantitative evaluation of tissue disease states. We demonstrate MFI and HRI on fluorophores, tissue phantoms and ex vivo tissues and present the results as an RGB colour image for more intuitive assessment. This follows dimensionality reduction of the acquired spectral data with a fixed-reference isomap diagnostic algorithm to extract only the most meaningful data parameters. FCE is a probe-based point imaging technique offering confocal detection in vivo with almost histology-grade images. We perform FCE imaging on chemotherapy-treated in vitro human ovarian cancer cells, ex vivo human cancer tissues and photosensitiser-treated in vivo murine tumours to show the enhanced detection capabilities of the technique. Finally, the three modalities are applied in combination to demonstrate an optical viewfinder approach as a possible minimally-invasive imaging method for early cancer detection and diagnosis.
author2 Elson, Dan ; Yang, Guang-Zhong
author_facet Elson, Dan ; Yang, Guang-Zhong
Koh, Kevin Rongsheng
author Koh, Kevin Rongsheng
author_sort Koh, Kevin Rongsheng
title Multimodal multispectral optical endoscopic imaging for biomedical applications
title_short Multimodal multispectral optical endoscopic imaging for biomedical applications
title_full Multimodal multispectral optical endoscopic imaging for biomedical applications
title_fullStr Multimodal multispectral optical endoscopic imaging for biomedical applications
title_full_unstemmed Multimodal multispectral optical endoscopic imaging for biomedical applications
title_sort multimodal multispectral optical endoscopic imaging for biomedical applications
publisher Imperial College London
publishDate 2011
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.528677
work_keys_str_mv AT kohkevinrongsheng multimodalmultispectralopticalendoscopicimagingforbiomedicalapplications
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