Impact of a single distance phase retrieval algorithm on spatial resolution in X-ray inline phase sensitive imaging.

IF 0.3 Q4 SPECTROSCOPY
Muhammad U. Ghani, Bradley Gregory, Farid H Omoumi, B. Zheng, A. Yan, Xizeng Wu, Hong Liu
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引用次数: 6

Abstract

A single-projection based phase retrieval method based on the phase attenuation duality principle (PAD) was used to compare the spatial resolution of the acquired phase sensitive and PAD processed phase retrieved images. An inline phase sensitive prototype was used to acquire the phase sensitive images. The prototype incorporates a micro-focus x-ray source and a flat panel detector with a 50 μm pixel pitch. A phantom composed of a 2 cm thick 50-50 adipose-glandular mimicking slab sandwiched with a 0.82 cm thick slanted PMMA sharp edge was used. Phase sensitive image of the phantom was acquired at 120 kV, 3.35 mAs with a 16 μm tube focal spot size under a geometric magnification (M) of 2.5. The PAD based method was applied to the acquired phase sensitive image for the retrieval of phase values. With necessary data processing, modulation transfer function (MTF) curves were determined for the estimation and comparison of the spatial resolution. The PAD processed phase retrieved values of the phantom were in good agreement with the theoretically calculated values. Phase sensitive images showed higher spatial resolution at all spatial frequencies compared to the phase retrieved images. It was noted that the high-frequency signal components in the retrieved image were suppressed that resulted in lower MTF values. When compared to the phase sensitive image, the cutoff resolution (10% MTF) for phase retrieved image dropped 32% from 15.6 lp/mm (32μm) to 10.6 lp/mm (47μm). The resolution offered by this phase sensitive prototype is radiographically enough to detect breast cancer.
单距离相位检索算法对x射线内联相敏成像空间分辨率的影响。
使用基于相位衰减对偶原理(PAD)的基于单投影的相位检索方法来比较采集的相位敏感图像和PAD处理的相位检索图像的空间分辨率。使用在线相位敏感原型来获取相位敏感图像。原型包括一个微焦点x射线源和一个像素间距为50μm的平板探测器。使用由2cm厚的50-50脂肪腺体模拟板组成的体模,该板夹有0.82cm厚的倾斜PMMA锐边。在几何放大倍数(m)为2.5的情况下,在120 kV、3.35 mAs、16μm管焦斑大小下采集体模的相位敏感图像。将基于PAD的方法应用于采集的相位敏感图像,以检索相位值。通过必要的数据处理,确定了调制传递函数(MTF)曲线,用于空间分辨率的估计和比较。PAD处理的体模相位检索值与理论计算值非常一致。与相位检索图像相比,相位敏感图像在所有空间频率下都显示出更高的空间分辨率。注意到检索到的图像中的高频信号分量被抑制,这导致较低的MTF值。与相位敏感图像相比,相位检索图像的截止分辨率(10%MTF)从15.6lp/mm(32μm)下降了32%,降至10.6LP/mm(47μm)。这个相敏原型提供的分辨率在射线照相上足以检测癌症。
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期刊介绍: Biomedical Spectroscopy and Imaging (BSI) is a multidisciplinary journal devoted to the timely publication of basic and applied research that uses spectroscopic and imaging techniques in different areas of life science including biology, biochemistry, biotechnology, bionanotechnology, environmental science, food science, pharmaceutical science, physiology and medicine. Scientists are encouraged to submit their work for publication in the form of original articles, brief communications, rapid communications, reviews and mini-reviews. Techniques covered include, but are not limited, to the following: • Vibrational Spectroscopy (Infrared, Raman, Teraherz) • Circular Dichroism Spectroscopy • Magnetic Resonance Spectroscopy (NMR, ESR) • UV-vis Spectroscopy • Mössbauer Spectroscopy • X-ray Spectroscopy (Absorption, Emission, Photoelectron, Fluorescence) • Neutron Spectroscopy • Mass Spectroscopy • Fluorescence Spectroscopy • X-ray and Neutron Scattering • Differential Scanning Calorimetry • Atomic Force Microscopy • Surface Plasmon Resonance • Magnetic Resonance Imaging • X-ray Imaging • Electron Imaging • Neutron Imaging • Raman Imaging • Infrared Imaging • Terahertz Imaging • Fluorescence Imaging • Near-infrared spectroscopy.
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