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Design of SPECT for BNCT to measure local boron dose with GAGG scintillator

准直器 闪烁体 中子俘获 图像分辨率 材料科学 核医学 投影(关系代数) 放射化学 医学物理学 光学 计算机科学 物理 化学 医学 探测器 核物理学 算法
作者
Isao Murata,Sachie Kusaka,Kentaro Minami,Nobuhide Saraue,Shingo Tamaki,Itsuro Kato,Fuminobu Sato
出处
期刊:Applied Radiation and Isotopes [Elsevier]
卷期号:181: 110056-110056 被引量:18
标识
DOI:10.1016/j.apradiso.2021.110056
摘要

Boron Neutron Capture Therapy (BNCT) is a promising cancer therapy, which has recently been in practical use in Japan especially using an accelerator. In BNCT real-time measurement of local boron dose is required. In the present study, a novel design of a SPECT system for BNCT (BNCT-SPECT) has been carried out to realize estimation of the local boron dose, i.e., treatment effect of BNCT. Necessary performance which BNCT community requires includes accuracy of 5% and spatial resolution of 5 mm, which are regarded to be difficult to realize. A possible design was investigated to meet the requirements. The design results we achieved are as follows: As for the elemental detection device, GAGG (3.5 × 3.5 × 30 mm3) was selected, and for the collimator, the collimator hole diameter was 3.5 mm, the collimator hole pitch was 4 mm and the collimator length was 26 cm. For the obtained performance with the design, the accuracy was 4.4% and the spatial resolution was 5.1 mm. Currently prior to production of the real system, a prototype of BNCT-SPECT is being developed to acquire real projection data to confirm the performance and examine our own image reconstruction method with the obtained projection data.
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