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Integrated optical sensor in glass for optical coherence tomography (OCT)
The in vivo examination of tissue structures (e.g., human skin, eye retina) by optical coherence tomography is a powerful tool for pharmaceutical and medical research for the development of new drugs and new diagnostic methods. The parallel integration of eight Michelson interferometers including al...
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Published in: | IEEE journal of selected topics in quantum electronics 2000-09, Vol.6 (5), p.730-734 |
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container_title | IEEE journal of selected topics in quantum electronics |
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creator | Culemann, D. Knuettel, A. Voges, E. |
description | The in vivo examination of tissue structures (e.g., human skin, eye retina) by optical coherence tomography is a powerful tool for pharmaceutical and medical research for the development of new drugs and new diagnostic methods. The parallel integration of eight Michelson interferometers including all reference light paths in one small glass chip is the basis of a compact sensor system with a high resolution, short measurement time, and a large penetration depth especially in almost opaque tissue such as the human skin. The interferometer array is fabricated with silver ion exchanged waveguides. |
doi_str_mv | 10.1109/2944.892611 |
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The interferometer array is fabricated with silver ion exchanged waveguides.</description><subject>Arrays</subject><subject>Biomedical optical imaging</subject><subject>Coherent light</subject><subject>Glass</subject><subject>Human</subject><subject>Humans</subject><subject>In vivo</subject><subject>Integrated optics</subject><subject>Interferometers</subject><subject>Ion exchangers</subject><subject>Medical applications</subject><subject>Optical Coherence Tomography</subject><subject>Optical glass</subject><subject>Optical interferometry</subject><subject>Optical sensors</subject><subject>Silver</subject><subject>Skin</subject><subject>Tomography</subject><issn>1077-260X</issn><issn>1558-4542</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2000</creationdate><recordtype>article</recordtype><recordid>eNqN0c9LwzAUB_AgCs7pyZungOAPpDM_m_Qowx-DwS4TvJWYvm4dXVOT7rD_3sxODx7EUxLeJ4_3-CJ0TsmIUpLds0yIkc5YSukBGlApdSKkYIfxTpRKWErejtFJCCtCiBaaDNBk0nSw8KaDAru2q6ypcYAmOI-rBi9qEwIu4-O7Zt0SPDQWcOfWLn5sl1t8MxvPb0_RUWnqAGf7c4henx7n45dkOnuejB-mieWKdYlINWSUl1JzQeNASnGiDLfSak4KoFooJVhhlbTvmjCjeGEY6NIqZrngkg_Rdd-39e5jA6HL11WwUNemAbcJeUZFyrWmaZRXf0qmoyTZPyAVkoivjpe_4MptfBPXzSkhTHCaxr2G6K5X1rsQPJR566u18duI8l1O-S6nvM8p6oteVwDwI_fFT71xiio</recordid><startdate>20000901</startdate><enddate>20000901</enddate><creator>Culemann, D.</creator><creator>Knuettel, A.</creator><creator>Voges, E.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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source | IEEE Electronic Library (IEL) Journals |
subjects | Arrays Biomedical optical imaging Coherent light Glass Human Humans In vivo Integrated optics Interferometers Ion exchangers Medical applications Optical Coherence Tomography Optical glass Optical interferometry Optical sensors Silver Skin Tomography |
title | Integrated optical sensor in glass for optical coherence tomography (OCT) |
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