Dark-field and directional dark-field on low-coherence x ray sources with random mask modulations: validation with SAXS anisotropy measurements
Phase-contrast imaging, dark-field, and directional dark-field imaging are recent x ray imaging modalities that have been demonstrated to reveal different information and contrast from those provided by conventional x ray imaging. Access to these new types of images is currently limited because the...
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Veröffentlicht in: | Optics letters 2023-11, Vol.48 (22), p.5839-5842 |
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container_title | Optics letters |
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creator | Magnin, Clara Quénot, Lauréne Bohic, Sylvain Mihai Cenda, Dan Fernández Martínez, Manuel Lantz, Blandine Faure, Bertrand Brun, Emmanuel |
description | Phase-contrast imaging, dark-field, and directional dark-field imaging are recent x ray imaging modalities that have been demonstrated to reveal different information and contrast from those provided by conventional x ray imaging. Access to these new types of images is currently limited because the acquisitions require coherent sources such as synchrotron radiation or complicated optical setups. This Letter demonstrates the possibility of efficiently performing phase-contrast, dark-field, and directional dark-field imaging on a low-coherence laboratory system equipped with a conventional x ray tube, using a simple, fast, and robust single-mask technique. |
doi_str_mv | 10.1364/OL.501716 |
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source | Optica Publishing Group Journals |
subjects | Anisotropy Coherence Optics Physics Synchrotron radiation Synchrotrons X ray imagery X ray sources X ray tubes |
title | Dark-field and directional dark-field on low-coherence x ray sources with random mask modulations: validation with SAXS anisotropy measurements |
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