基于SNI 8506:2018的硼-中子俘获治疗准直器均匀性测试

IF 0.6 Q4 NUCLEAR SCIENCE & TECHNOLOGY
S. Santosa, K. Khotimah, H. Yasmine
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引用次数: 0

摘要

根据印度尼西亚标准SNI 8506:2018进行了一系列均匀性测试,通过使用双壁单图像射线照相术(DWSI)技术和120至150 kV的x射线机对12个制造的准直器进行了研究。该标准规定,应在七个不同的点上测量胶片密度,并且所获得的结果不得超过平均密度的±0.05。本文概述了准直器的测试工作,计算了胶片中六个不同点的密度。由于所选实验室的准直器制造和射线照相能力的技术限制,选择了六个不同的点。12个准直器的薄膜密度结果为:(1)2.59;(2) 2.57;(3) 2.14;(4) 1.88;(5) 2.10;(6) 1.96;(7) 2.33;(8) 2.28;(9) 2.06;(10) 2.18;(11) 2.24;和(12)2.33。结果表明,准直器2具有最均匀的密度。本研究得出的结论是,制造BNCT准直器需要确定的参数和工艺,以实现基于标准的适当性能测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Homogeneity Test on Collimators for Boron-Neutron Capture Therapy based on SNI 8506:2018
A serial homogeneity test based on Indonesian Standard SNI 8506:2018 were undertaken to investigate 12 manufactured collimators by using double wall single image radiography (DWSI) technique with an x-ray machine ranging from 120 to 150 kV. The standard stated that the film density should be measured on seven different points, and the result obtained must not exceed ± 0.05 from the average density. This paper outlines a testing work for the collimators, calculating the density on six different points in the film. Six different points were selected due to technical constrains of the collimator manufacturing and radiography capabilities of the selected laboratory. The results of film the density for the 12 collimators are: (1) 2.59; (2) 2.57; (3) 2.14; (4) 1.88; (5) 2.10; (6) 1.96; (7) 2.33; (8) 2.28; (9) 2.06; (10) 2.18; (11) 2.24; and (12) 2.33. The result shows that collimator-2 has the most homogenous density. This study concludes that established parameters and process are needed to manufacture the collimator for BNCT in achieving proper performance testing based on the standard.
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来源期刊
Atom Indonesia
Atom Indonesia NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
0.00%
发文量
20
审稿时长
16 weeks
期刊介绍: The focus of Atom Indonesia is research and development in nuclear science and technology. The scope of this journal covers experimental and analytical research in nuclear science and technology. The topics include nuclear physics, reactor physics, radioactive waste, fuel element, radioisotopes, radiopharmacy, radiation, and neutron scattering, as well as their utilization in agriculture, industry, health, environment, energy, material science and technology, and related fields.
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