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使用能量超过50千电子伏特的工程多孔材料进行的X射线相衬成像。

X-ray phase-contrast imaging with engineered porous materials over 50 keV.

作者信息

Wang Hongchang, Cai Biao, Pankhurst Matthew James, Zhou Tunhe, Kashyap Yogesh, Atwood Robert, Le Gall Nolwenn, Lee Peter, Drakopoulos Michael, Sawhney Kawal

机构信息

Diamond Light Source, Harwell Science & Innovation Campus, Didcot OX11 0DE, UK.

School of Metallurgy and Materials, University of Birmingham, Birmingham B15 2TT, UK.

出版信息

J Synchrotron Radiat. 2018 Jul 1;25(Pt 4):1182-1188. doi: 10.1107/S1600577518005623. Epub 2018 Jun 12.

Abstract

X-ray phase-contrast imaging can substantially enhance image contrast for weakly absorbing samples. The fabrication of dedicated optics remains a major barrier, especially in high-energy regions (i.e. over 50 keV). Here, the authors perform X-ray phase-contrast imaging by using engineered porous materials as random absorption masks, which provides an alternative solution to extend X-ray phase-contrast imaging into previously challenging higher energy regions. The authors have measured various samples to demonstrate the feasibility of the proposed engineering materials. This technique could potentially be useful for studying samples across a wide range of applications and disciplines.

摘要

X射线相衬成像可以显著提高弱吸收样品的图像对比度。专用光学元件的制造仍然是一个主要障碍,尤其是在高能区域(即超过50 keV)。在此,作者通过使用工程多孔材料作为随机吸收掩膜来进行X射线相衬成像,这为将X射线相衬成像扩展到以前具有挑战性的更高能量区域提供了一种替代解决方案。作者测量了各种样品,以证明所提出的工程材料的可行性。该技术可能对广泛应用和学科领域的样品研究有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a86f/6038599/1a2cf9cb1cae/s-25-01182-fig1.jpg

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