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基于 X 射线散斑的成像偏折检索算法比较,用于优化辐射剂量。

Comparison of X-ray speckle-based imaging deflection retrieval algorithms for the optimization of radiation dose.

机构信息

NOVITOM, 3 av. doyen Louis Weil, 38000 Grenoble, France.

Inserm UA7 STROBE, Universite Grenoble Alpes, 71 av. des Martyrs, 38000 Grenoble, France.

出版信息

Phys Med Biol. 2021 Mar 2;66(6):065005. doi: 10.1088/1361-6560/ab87f7.

Abstract

X-ray phase contrast imaging can provide improved or complementary information to traditional attenuation-based X-ray imaging, making the field a vast and rapidly evolving research subject. X-ray speckle-based imaging (SBI) is one phase-contrast imaging approach that has shown significant potential in providing both high sensitivity and high resolution while using a very simple experimental setup. With the aim of transferring such phase-contrast-based imaging techniques from synchrotron to laboratory X-ray sources, the issue of the deposited radiation dose still remains to be addressed. In this work, we experimentally and quantitatively compare the results from three different SBI phase retrieval algorithms using both phantoms and biological samples in order to infer the optimal configuration. The results obtained using a synchrotron beam suggest that the technique based on optical flow conservation achieves the most accurate retrieval from the lowest number of sample exposures. This constitutes an important step toward the possibility of transferring SBI into the clinic.

摘要

X 射线相衬成像可以提供比传统基于衰减的 X 射线成像更好或更互补的信息,使得该领域成为一个广阔且快速发展的研究课题。基于 X 射线散斑的成像(SBI)是一种相衬成像方法,它在使用非常简单的实验设置的情况下,显示出了在提供高灵敏度和高分辨率方面的巨大潜力。为了将基于相衬的这些成像技术从同步加速器转移到实验室 X 射线源,仍然需要解决辐射剂量的问题。在这项工作中,我们使用体模和生物样本实验和定量比较了三种不同的 SBI 相位恢复算法的结果,以便推断出最佳配置。使用同步加速器光束获得的结果表明,基于光流守恒的技术可以从最少的样本曝光中实现最准确的恢复。这是将 SBI 转移到临床应用的重要一步。

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