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使用光纤结构闪烁体板的超高分辨率辐射成像系统。

Ultrahigh resolution radiation imaging system using an optical fiber structure scintillator plate.

作者信息

Yamamoto Seiichi, Kamada Kei, Yoshikawa Akira

机构信息

Radiological and Medical Laboratory Sciences, Nagoya University Graduate School of Medicine, Nagoya, Japan.

New Industry Creation Hatchery Center (NICHe), Tohoku University, Sendai, Japan.

出版信息

Sci Rep. 2018 Feb 16;8(1):3194. doi: 10.1038/s41598-018-21500-z.

Abstract

High resolution imaging of radiation is required for such radioisotope distribution measurements as alpha particle detection in nuclear facilities or high energy physics experiments. For this purpose, we developed an ultrahigh resolution radiation imaging system using an optical fiber structure scintillator plate. We used a ~1-μm diameter fiber structured GdAlO:Ce (GAP) /α-AlO scintillator plate to reduce the light spread. The fiber structured scintillator plate was optically coupled to a tapered optical fiber plate to magnify the image and combined with a lens-based high sensitivity CCD camera. We observed the images of alpha particles with a spatial resolution of ~25 μm. For the beta particles, the images had various shapes, and the trajectories of the electrons were clearly observed in the images. For the gamma photons, the images also had various shapes, and the trajectories of the secondary electrons were observed in some of the images. These results show that combining an optical fiber structure scintillator plate with a tapered optical fiber plate and a high sensitivity CCD camera achieved ultrahigh resolution and is a promising method to observe the images of the interactions of radiation in a scintillator.

摘要

对于诸如核设施中的α粒子检测或高能物理实验等放射性同位素分布测量,需要进行高分辨率的辐射成像。为此,我们开发了一种使用光纤结构闪烁体板的超高分辨率辐射成像系统。我们使用了直径约1μm的光纤结构GdAlO:Ce(GAP)/α-AlO闪烁体板来减少光扩散。光纤结构闪烁体板与锥形光纤板进行光学耦合以放大图像,并与基于透镜的高灵敏度CCD相机相结合。我们观察到α粒子的图像,其空间分辨率约为25μm。对于β粒子,图像具有各种形状,并且在图像中清晰地观察到了电子的轨迹。对于γ光子,图像也具有各种形状,并且在一些图像中观察到了二次电子的轨迹。这些结果表明,将光纤结构闪烁体板与锥形光纤板和高灵敏度CCD相机相结合可实现超高分辨率,并且是观察闪烁体中辐射相互作用图像的一种有前途的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c49/5816672/73fd009f8c20/41598_2018_21500_Fig1_HTML.jpg

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