Influence of pulse pile-up effects on material decomposition with photon-counting CT

K. Murata, K. Ogawa
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引用次数: 1

Abstract

The aim of this study is to reveal an influence of pulse pile-up effects on material decomposition with a photon-counting CT system. The photon-counting CT has great advantages compared with a conventional system. Among them we focused on the ability of a material decomposition. However, a photon-counting CT system also has many issues to be solved. The most serious problem is a pulse pile-up effect. When multiple X-ray photons are simultaneously incident on a detector, the recorded spectrum is distorted. It should significantly degrade the material decomposition accuracy. Hence, we investigated influence of the pile-up effect on material decomposition, and feasibility of a spectral distortion-correction method. Using an analytical pile-up model, we performed simulations and found that accuracy of material-density measurements decreased with increasing X-ray intensity. We also found that spectral distortion could not be negligible even in case of impractically low x-ray intensity for an accurate density measurement of low concentration solution, suggesting a requirement of spectral distortion correction. Hence, we provided a correction method based on a least square method. In a simulation, our method successfully corrected the spectral distortion even in case of wide energy windows. The remained uncertainty was less than a few percent for a moderate X-ray intensity.
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脉冲堆积效应对光子计数CT材料分解的影响
本研究的目的是利用光子计数CT系统揭示脉冲堆积效应对材料分解的影响。与传统系统相比,光子计数CT具有很大的优势。其中我们关注的是材料分解的能力。然而,光子计数CT系统也有许多问题需要解决。最严重的问题是脉冲堆积效应。当多个x射线光子同时入射到探测器上时,记录的光谱会发生畸变。它应该显著降低材料分解精度。因此,我们研究了堆积效应对物质分解的影响,以及光谱失真校正方法的可行性。使用分析堆积模型,我们进行了模拟,发现材料密度测量的准确性随着x射线强度的增加而降低。我们还发现,为了精确测量低浓度溶液的密度,即使在不切实际的低x射线强度下,光谱畸变也不能忽略不计,这表明需要对光谱畸变进行校正。因此,我们提出了一种基于最小二乘法的校正方法。在模拟中,我们的方法成功地修正了宽能量窗情况下的光谱畸变。对于中等x射线强度,剩余的不确定性小于百分之几。
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