Quantitative phase imaging with scanning holographic microscopy: an experimental assesment

<p>Abstract</p> <p>This paper demonstrates experimentally how quantitative phase information can be obtained in scanning holographic microscopy. Scanning holography can operate in both coherent and incoherent modes, simultaneously if desired, with different detector geometries. A s...

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Main Authors: Tada Yoshitaka, Indebetouw Guy, Leacock John
Format: Article
Language:English
Published: BMC 2006-11-01
Series:BioMedical Engineering OnLine
Online Access:http://www.biomedical-engineering-online.com/content/5/1/63
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spelling doaj-95f0cb5581264c8a9336ca2d39ef2a7d2020-11-24T23:52:12ZengBMCBioMedical Engineering OnLine1475-925X2006-11-01516310.1186/1475-925X-5-63Quantitative phase imaging with scanning holographic microscopy: an experimental assesmentTada YoshitakaIndebetouw GuyLeacock John<p>Abstract</p> <p>This paper demonstrates experimentally how quantitative phase information can be obtained in scanning holographic microscopy. Scanning holography can operate in both coherent and incoherent modes, simultaneously if desired, with different detector geometries. A spatially integrating detector provides an incoherent hologram of the object's intensity distribution (absorption and/or fluorescence, for example), while a point detector in a conjugate plane of the pupil provides a coherent hologram of the object's complex amplitude, from which a quantitative measure of its phase distribution can be extracted. The possibility of capturing simultaneously holograms of three-dimensional specimens, leading to three-dimensional reconstructions with absorption contrast, reflectance contrast, fluorescence contrast, as was previously demonstrated, and quantitative phase contrast, as shown here for the first time, opens up new avenues for multimodal imaging in biological studies.</p> http://www.biomedical-engineering-online.com/content/5/1/63
collection DOAJ
language English
format Article
sources DOAJ
author Tada Yoshitaka
Indebetouw Guy
Leacock John
spellingShingle Tada Yoshitaka
Indebetouw Guy
Leacock John
Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
BioMedical Engineering OnLine
author_facet Tada Yoshitaka
Indebetouw Guy
Leacock John
author_sort Tada Yoshitaka
title Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
title_short Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
title_full Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
title_fullStr Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
title_full_unstemmed Quantitative phase imaging with scanning holographic microscopy: an experimental assesment
title_sort quantitative phase imaging with scanning holographic microscopy: an experimental assesment
publisher BMC
series BioMedical Engineering OnLine
issn 1475-925X
publishDate 2006-11-01
description <p>Abstract</p> <p>This paper demonstrates experimentally how quantitative phase information can be obtained in scanning holographic microscopy. Scanning holography can operate in both coherent and incoherent modes, simultaneously if desired, with different detector geometries. A spatially integrating detector provides an incoherent hologram of the object's intensity distribution (absorption and/or fluorescence, for example), while a point detector in a conjugate plane of the pupil provides a coherent hologram of the object's complex amplitude, from which a quantitative measure of its phase distribution can be extracted. The possibility of capturing simultaneously holograms of three-dimensional specimens, leading to three-dimensional reconstructions with absorption contrast, reflectance contrast, fluorescence contrast, as was previously demonstrated, and quantitative phase contrast, as shown here for the first time, opens up new avenues for multimodal imaging in biological studies.</p>
url http://www.biomedical-engineering-online.com/content/5/1/63
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AT indebetouwguy quantitativephaseimagingwithscanningholographicmicroscopyanexperimentalassesment
AT leacockjohn quantitativephaseimagingwithscanningholographicmicroscopyanexperimentalassesment
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