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BNCT束流整形体设计及其特性优化研究进展

穆文燕 王安祥 陆地 刘洋 原林 王博宇

现代应用物理2026,Vol.17Issue(2):14-26,13.
现代应用物理2026,Vol.17Issue(2):14-26,13.DOI:10.12061/j.issn.2095-6223.202506015

BNCT束流整形体设计及其特性优化研究进展

Research Progress on the Design and Optimization of Beam Shaping Assembly Based on BNCT

穆文燕 1王安祥 2陆地 3刘洋 1原林 1王博宇4

作者信息

  • 1. 西安工程大学 理学院||射线柔性防护技术陕西省高校工程研究中心||西安市核防护纺织装备技术重点实验室:西安 710048
  • 2. 西安工程大学 理学院
  • 3. 射线柔性防护技术陕西省高校工程研究中心||西安市核防护纺织装备技术重点实验室:西安 710048||中国海关科学技术研究中心,北京 100026
  • 4. 西安工程大学 理学院||射线柔性防护技术陕西省高校工程研究中心||西安市核防护纺织装备技术重点实验室:西安 710048||西安工业大学 核科学与技术研究院,西安 710021
  • 折叠

摘要

Abstract

Boron neutron capture therapy(BNCT)is an innovative radiation therapy capable of selectively targeting and destroying tumor cells.The beam shaping assembly(BSA),a critical core component of BNCT,plays an essential role in moderating fast neutrons,reducing radiation exposure to patients and healthcare providers,and optimizing dosimetric parameters.Based on numerical simulations and clinical trials conducted both domestically and internationally,this paper summarizes the structural design and theoretical foundations of the BSA in BNCT.It provides an in-depth discussion of the components within the BSA,including moderators,reflectors,thermal neutron absorbers,and gamma-ray shielding layers.Guided by the design parameters from the International Atomic Energy Agency(IAEA),this paper evaluates the design requirements for each component.The selection of materials for each component considers key influencing factors,such as fast neutron scattering cross-section,thermal neutron absorption cross-section,atomic mass,and material density.Finally,recent advances in the material and structural design of BSA systems specific to neutron sources are reviewed,offering insights into optimizing neutron source performance.

关键词

硼中子俘获治疗/束流整形体/超热中子/热中子/次级γ光子

Key words

boron neutron capture therapy/beam shaping assembly/epithermal neutron/thermal neutron/secondary gamma photon

分类

能源科技

引用本文复制引用

穆文燕,王安祥,陆地,刘洋,原林,王博宇..BNCT束流整形体设计及其特性优化研究进展[J].现代应用物理,2026,17(2):14-26,13.

基金项目

陕西省教育厅重点科研计划资助项目(22JC034) (22JC034)

现代应用物理

2095-6223

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