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首页|期刊导航|同位素|基于中高能回旋加速器生产68Ge核素的产额及产物模拟研究

基于中高能回旋加速器生产68Ge核素的产额及产物模拟研究

赵云龙 赵鹏飞 安世忠 官国英 王哲 王飞 李勇 魏素敏 周佳 王宇

同位素2024,Vol.37Issue(6):555-561,7.
同位素2024,Vol.37Issue(6):555-561,7.DOI:10.7538/tws.2024.youxian.101

基于中高能回旋加速器生产68Ge核素的产额及产物模拟研究

Simulation Study on the Yield and Reaction Products of 68Ge Nuclide Produced by Medium High Energy Cyclotron

赵云龙 1赵鹏飞 1安世忠 1官国英 1王哲 1王飞 1李勇 1魏素敏 1周佳 1王宇1

作者信息

  • 1. 中国原子能科学研究院,北京 102413
  • 折叠

摘要

Abstract

68Ge is the parent nuclide of radioactive nuclide 68Ga used in positron emission tomography(PET)diagnostic imaging,which is converted into 68Ga by a 68Ge/68Ga generator for clinical diagnostic imaging applications.Currently,there are 13 kinds of 68Ga labeled radiopharmaceuticals in China that have entered clinical practice and have good application prospects in tumor imaging such as high-grade endocrine tumors and prostate cancer.Therefore,with the approval and widespread use of 68Ga radiopharmaceuticals,68Ge has broad application prospects in both domestic and international markets.In addition,68Ge can also be widely used as a calibration source for PET scanners.China Institute of Atomic Energy(CIAE)plans to build a 75 MeV cyclotron with the maximum beam current of 800 μA and the proton energy range of 75 MeV.It will be used to focus on the production of 68Ge nuclide.This article used the Monte Carlo program FLUKA to simulate in detail the production of 68Ge nuclides yield,reaction products,the variation of impurity nuclide production with cooling time,and long-life nuclides affecting separation processes by irradiating gallium nickel alloy targets and niobium gallium capsule targets in medium to high energy proton cyclotron.The simulation results can provide the useful reference for the production,separation,and purification of 68Ge in medium to high energy cyclotron.

关键词

75 MeV回旋加速器/68Ge/蒙特卡罗模拟/同位素生产

Key words

75 MeV cyclotron/68Ge/Monte Carlo simulation/isotope production

分类

能源科技

引用本文复制引用

赵云龙,赵鹏飞,安世忠,官国英,王哲,王飞,李勇,魏素敏,周佳,王宇..基于中高能回旋加速器生产68Ge核素的产额及产物模拟研究[J].同位素,2024,37(6):555-561,7.

基金项目

国防科工局"核能开发"科研项目(HNKF202221(36)) (HNKF202221(36)

同位素

OACSTPCD

1000-7512

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