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用于临床前X射线光栅干涉测量的高纵横比吸收光栅的成像特性。

Imaging properties of high aspect ratio absorption gratings for use in preclinical x-ray grating interferometry.

作者信息

Trimborn Barbara, Meyer Pascal, Kunka Danays, Zuber Marcus, Albrecht Frederic, Kreuer Sascha, Volk Thomas, Baumbach Tilo, Koenig Thomas

机构信息

Institute for Photon Science and Synchrotron Radiation (IPS) & ANKA Synchrotron Radiation Facility, Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Phys Med Biol. 2016 Jan 21;61(2):527-41. doi: 10.1088/0031-9155/61/2/527. Epub 2015 Dec 18.

Abstract

X-ray grating interferometry is one among various methods that allow extracting the so-called phase and visibility contrasts in addition to the well-known transmission images. Crucial to achieving a high image quality are the absorption gratings employed. Here, we present an in-depth analysis of how the grating type and lamella heights influence the final images. Benchmarking gratings of two different designs, we show that a frequently used proxy for image quality, a grating's so-called visibility, is insufficient to predict contrast-to-noise ratios (CNRs). Presenting scans from an excised rat lung, we demonstrate that the CNRs obtained for transmission and visibility images anti-correlate. This is explained by the stronger attenuation implied by gratings that are engineered to provide high visibilities by means of an increased lamella height. We show that even the visibility contrast can suffer from this effect when the associated reduced photon flux on the detector is not outweighed by a corresponding gain in visibility. Resulting in an inevitable trade-off between the quality of the two contrasts, the question of how an optimal grating should be designed can hence only be answered in terms of Pareto optimality.

摘要

X射线光栅干涉测量法是众多方法之一,除了众所周知的透射图像外,该方法还能提取所谓的相位和可见度对比度。所采用的吸收光栅对实现高图像质量至关重要。在此,我们深入分析光栅类型和薄片高度如何影响最终图像。通过对两种不同设计的光栅进行基准测试,我们表明,作为图像质量常用指标的光栅所谓的可见度,不足以预测对比度噪声比(CNR)。通过展示从切除的大鼠肺部获得的扫描结果,我们证明透射图像和可见度图像的CNR呈反相关。这是因为通过增加薄片高度来设计以提供高可见度的光栅意味着更强的衰减。我们表明,当探测器上相关的光子通量减少未被可见度的相应增加所抵消时,即使是可见度对比度也会受到这种影响。这导致两种对比度的质量之间不可避免地要进行权衡,因此,关于如何设计最佳光栅的问题只能根据帕累托最优性来回答。

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