Optimization of signal and noise in x-ray phase and dark field imaging with a wire mesh.

IF 1.3 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Uttam Pyakurel, Arthur W Redgate, Carolyn A MacDonald, Jonathan C Petruccelli
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引用次数: 0

Abstract

Phase differences imparted by tissue are significantly larger than attenuation differences. In addition, small angle scatter from tissue microstructure can provide a dark field signal that is complementary to attenuation and phase. Unfortunately, the low spatial coherence of clinical sources reduces phase and dark field contrast. Our method structures the beam with a single low-cost wire mesh that does not need precise alignment and relaxes the coherence requirement on the source. In addition, focusing polycapillary optics, which can be permanently attached to sources, are employed to allow for the use of high-power primary sources by increasing the phase signal after the focus. However, the coarseness of the mesh reduces the phase and dark field signal-to-noise ratio (SNR) compared with grating-based techniques, so optimization of the phase and dark-field SNR is an important consideration. Here, we consider the impact on the SNR of the distances between the mesh and the source and detector, and of x-ray tube voltages, to optimize the system.

金属丝网x射线相位与暗场成像信号与噪声的优化。
组织传递的相位差明显大于衰减差。此外,组织微观结构的小角度散射可以提供与衰减和相位互补的暗场信号。不幸的是,临床光源的低空间相干性降低了相位和暗场对比度。我们的方法用一个低成本的金属丝网结构光束,不需要精确对准,并且放宽了对光源的相干性要求。此外,可以永久附着在光源上的聚焦多毛细光学,通过增加聚焦后的相位信号,允许使用高功率一次光源。然而,与基于光栅的技术相比,网格的粗糙性降低了相位和暗场信噪比(SNR),因此优化相位和暗场信噪比是一个重要的考虑因素。在这里,我们考虑了网格与源和探测器之间的距离以及x射线管电压对信噪比的影响,以优化系统。
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来源期刊
Biomedical Physics & Engineering Express
Biomedical Physics & Engineering Express RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.80
自引率
0.00%
发文量
153
期刊介绍: BPEX is an inclusive, international, multidisciplinary journal devoted to publishing new research on any application of physics and/or engineering in medicine and/or biology. Characterized by a broad geographical coverage and a fast-track peer-review process, relevant topics include all aspects of biophysics, medical physics and biomedical engineering. Papers that are almost entirely clinical or biological in their focus are not suitable. The journal has an emphasis on publishing interdisciplinary work and bringing research fields together, encompassing experimental, theoretical and computational work.
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