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Study of neutron dose equivalent at the HIRFL deep tumor therapy terminal

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【作者】 徐俊奎苏有武李武元严维伟李宗强毛旺庞成果徐翀

【Author】 Jun-Kui Xu;You-Wu Su;Wu-Yuan Li;Wei-Wei Yan;Zong-Qiang Li;Wang Mao;Cheng-Guo Pang;Chong Xu;Institute of Modern Physics, Chinese Academy of Sciences;School of Nuclear Science and Technology, Lanzhou University;

【机构】 Institute of Modern Physics, Chinese Academy of SciencesSchool of Nuclear Science and Technology, Lanzhou University

【摘要】 The secondary neutron fields at the deep tumor therapy terminal at HIRFL(Heavy Ion Research Facility in Lanzhou) were investigated. The distributions of neutron ambient dose equivalent were measured with a FHT762Wendi-II neutron ambient dose equivalent meter as 12C ions with energies of 165, 207, 270, and 350 Me V/u were bombarded on thick tissue-like targets. The thickness of targets used in the experiments was larger than the range of the carbon ions. The neutron spectra and dose equivalent were simulated by using FLUKA code, and the results agree well with the experimental data. The experiment results showed that the neutron dose produced by fragmentation reactions in tissue can be neglected in carbon-ion therapy, even considering their enhanced biological effectiveness.These results are also valuable for radiation protection, especially in the shielding design of high energy heavy ion medical machines.

【Abstract】 The secondary neutron fields at the deep tumor therapy terminal at HIRFL(Heavy Ion Research Facility in Lanzhou) were investigated. The distributions of neutron ambient dose equivalent were measured with a FHT762Wendi-II neutron ambient dose equivalent meter as 12C ions with energies of 165, 207, 270, and 350 Me V/u were bombarded on thick tissue-like targets. The thickness of targets used in the experiments was larger than the range of the carbon ions. The neutron spectra and dose equivalent were simulated by using FLUKA code, and the results agree well with the experimental data. The experiment results showed that the neutron dose produced by fragmentation reactions in tissue can be neglected in carbon-ion therapy, even considering their enhanced biological effectiveness.These results are also valuable for radiation protection, especially in the shielding design of high energy heavy ion medical machines.

  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2017年06期
  • 【分类号】R730.55
  • 【被引频次】3
  • 【下载频次】20
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