Optical design for a spatial-spectral volume holographic imaging system

The spatial-spectral holographic imaging system (S[superscript 2]-VHIS) is a promising alternative to confocal microscopy due to its capabilities to simultaneously image several sample depths with high resolution. However, the field of view of previously presented S[superscript 2]-VHIS prototypes ha...

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Main Authors: Gelsinger-Austin, Paul J., Luo, Yuan, Watson, Jonathan Matthew, Barbastathis, George, Kostuk, Raymond K., Barton, Jennifer K., Castro, Jose M.
Other Authors: Lincoln Laboratory
Format: Article
Language:en_US
Published: Society of Photo-optical Instrumentation Engineers 2011
Online Access:http://hdl.handle.net/1721.1/61418
https://orcid.org/0000-0002-4140-1404
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author Gelsinger-Austin, Paul J.
Luo, Yuan
Watson, Jonathan Matthew
Barbastathis, George
Kostuk, Raymond K.
Barton, Jennifer K.
Castro, Jose M.
author2 Lincoln Laboratory
author_facet Lincoln Laboratory
Gelsinger-Austin, Paul J.
Luo, Yuan
Watson, Jonathan Matthew
Barbastathis, George
Kostuk, Raymond K.
Barton, Jennifer K.
Castro, Jose M.
author_sort Gelsinger-Austin, Paul J.
collection MIT
description The spatial-spectral holographic imaging system (S[superscript 2]-VHIS) is a promising alternative to confocal microscopy due to its capabilities to simultaneously image several sample depths with high resolution. However, the field of view of previously presented S[superscript 2]-VHIS prototypes has been restricted to less than 200 mu m. We present experimental results of an improved S[superscript 2]-VHIS design that has a field of view of ~ 1 mm while maintaining high resolution and dynamic range.
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spelling mit-1721.1/614182022-09-30T00:10:27Z Optical design for a spatial-spectral volume holographic imaging system Gelsinger-Austin, Paul J. Luo, Yuan Watson, Jonathan Matthew Barbastathis, George Kostuk, Raymond K. Barton, Jennifer K. Castro, Jose M. Lincoln Laboratory Massachusetts Institute of Technology. Department of Mechanical Engineering Barbastathis, George Luo, Yuan Watson, Jonathan Matthew Barbastathis, George The spatial-spectral holographic imaging system (S[superscript 2]-VHIS) is a promising alternative to confocal microscopy due to its capabilities to simultaneously image several sample depths with high resolution. However, the field of view of previously presented S[superscript 2]-VHIS prototypes has been restricted to less than 200 mu m. We present experimental results of an improved S[superscript 2]-VHIS design that has a field of view of ~ 1 mm while maintaining high resolution and dynamic range. National Institutes of Health (U.S.) (CA118167) 2011-03-04T19:59:36Z 2011-03-04T19:59:36Z 2010-04 2009-11 Article http://purl.org/eprint/type/JournalArticle 0091-3286 http://hdl.handle.net/1721.1/61418 Gelsinger-Austin, Paul J., Yuan Luo, Jonathan M. Watson, Raymond K. Kostuk, George Barbastathis, Jennifer K. Barton and Jose M. Castro, "Optical design for a spatial-spectral volume holographic imaging system", Opt. Eng. 49, 043001 (Apr 12, 2010); © 2010 SPIE. https://orcid.org/0000-0002-4140-1404 en_US http://dx.doi.org/10.1117/1.3378025 Optical Engineering Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use. application/pdf Society of Photo-optical Instrumentation Engineers SPIE
spellingShingle Gelsinger-Austin, Paul J.
Luo, Yuan
Watson, Jonathan Matthew
Barbastathis, George
Kostuk, Raymond K.
Barton, Jennifer K.
Castro, Jose M.
Optical design for a spatial-spectral volume holographic imaging system
title Optical design for a spatial-spectral volume holographic imaging system
title_full Optical design for a spatial-spectral volume holographic imaging system
title_fullStr Optical design for a spatial-spectral volume holographic imaging system
title_full_unstemmed Optical design for a spatial-spectral volume holographic imaging system
title_short Optical design for a spatial-spectral volume holographic imaging system
title_sort optical design for a spatial spectral volume holographic imaging system
url http://hdl.handle.net/1721.1/61418
https://orcid.org/0000-0002-4140-1404
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