Three-dimensional reconstruction of a small piece of Ce-doped lithium glass scintillator of an optical fiber-based neutron detector using microcomputed tomography technique.

IF 2 4区 医学 Q2 BIOLOGY
Akihisa Ishikawa, Mariko Segawa, Yosuke Toh, Kenichi Watanabe, Akihiko Masuda, Tetsuro Matsumoto, Atsushi Yamazaki, Sachiko Yoshihashi, Akira Uritani, Hideki Harano
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引用次数: 0

Abstract

An optical fiber-based neutron detector is a real-time neutron monitor for an intense neutron field. A small piece of neutron scintillator, such as Ce-doped lithium glass (Li-glass), used in the detector has a random shape with a grain size of 200-400 μm. This causes shape-dependent effects on the detector response. However, it is difficult to control or determine its shape due to its small size. Here we propose a technique to characterize the fine structure of a small piece of scintillator using a microcomputed tomography (CT) system. To verify accuracy, the mass calculated based on the density of Li-glass and the volume extracted from the obtained CT image was compared to the mass measured in advance using an electronic balance. In the obtained CT images, the fine shape of the small piece of Li-glass was clearly visible, and no false signals from the surrounding components were observed. The calculated mass was in good agreement with the measured value, however, when the total number of projection images was 2000, a slight underestimation was observed. This was mitigated by increasing the number of projection images, and the difference between the calculated and measured mass was 1.6% when the number of the projection images was 3141. This was equivalent to the uncertainty of the measured mass. The proposed technique will be useful when high accuracy is needed, such as for medical applications.

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利用微计算机断层扫描技术对光纤中子探测器中一小片掺铈锂玻璃闪烁体进行三维重建。
光纤中子探测器是一种用于强中子场的实时中子监测仪。探测器中使用的小块中子闪烁体,如掺ce锂玻璃(Li-glass),具有随机形状,晶粒尺寸为200-400 μm。这导致探测器响应的形状依赖效应。然而,由于其体积小,很难控制或确定其形状。在这里,我们提出了一种技术来表征一个小片闪烁体的精细结构,使用微计算机断层扫描(CT)系统。为了验证准确性,将基于锂玻璃密度计算的质量和从获得的CT图像中提取的体积与事先使用电子天平测量的质量进行比较。在获得的CT图像中,小块Li-glass的精细形状清晰可见,没有观察到周围成分的虚假信号。计算质量与实测值吻合较好,但当投影图像总数为2000时,出现了轻微的低估。这可以通过增加投影图像的数量来缓解,当投影图像的数量为3141时,计算质量与测量质量之间的差异为1.6%。这相当于测量质量的不确定度。提出的技术将在需要高精度时有用,例如医疗应用。
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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
86
审稿时长
4-8 weeks
期刊介绍: The Journal of Radiation Research (JRR) is an official journal of The Japanese Radiation Research Society (JRRS), and the Japanese Society for Radiation Oncology (JASTRO). Since its launch in 1960 as the official journal of the JRRS, the journal has published scientific articles in radiation science in biology, chemistry, physics, epidemiology, and environmental sciences. JRR broadened its scope to include oncology in 2009, when JASTRO partnered with the JRRS to publish the journal. Articles considered fall into two broad categories: Oncology & Medicine - including all aspects of research with patients that impacts on the treatment of cancer using radiation. Papers which cover related radiation therapies, radiation dosimetry, and those describing the basis for treatment methods including techniques, are also welcomed. Clinical case reports are not acceptable. Radiation Research - basic science studies of radiation effects on livings in the area of physics, chemistry, biology, epidemiology and environmental sciences. Please be advised that JRR does not accept any papers of pure physics or chemistry. The journal is bimonthly, and is edited and published by the JRR Editorial Committee.
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