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General Electric PETtrace cyclotron as a neutron source for boron neutron capture therapy.

机译:通用电气PETtrace回旋加速器作为硼中子捕获疗法的中子源。

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摘要

This research investigates the use of a PETtrace cyclotron produced by General Electric (GE) as a neutron source for boron neutron capture therapy (BNCT). The GE PETtrace was chosen for this investigation because this type of cyclotron is popular among nuclear pharmacies and clinics in many countries; it is compact and reliable; it produces protons with energies high enough to produce neutrons with appropriate energy and fluence rate for BNCT and it does not require significant changes in design to provide neutrons. In particular, the standard PETtrace 18O target is considered. The cyclotron efficiency may be significantly increased if unused neutrons produced during radioisotopes production could be utilized for other medical modalities such as BNCT at the same time.; The resulting dose from the radiation emitted from the target is evaluated using the Monte Carlo radiation transport code MCNP at several depths in a brain phantom for different scattering geometries. Four different moderating materials of various thicknesses were considered: light water, carbon, heavy water, arid Fluental(TM). The fluence rate tally was used to calculate photon and neutron dose, by applying fluence rate-to-dose conversion factors.; Fifteen different geometries were considered and a 30-cm thick heavy water moderator was chosen as the most suitable for BNCT with the GE PETtrace cyclotron. According to the Brookhaven Medical Research Reactor (BMRR) protocol, the maximum dose to the normal brain is set to 12.5 RBEGy, which for the conditions of using a heavy water moderator, assuming a 60 muA beam current, would be reached with a treatment time of 258 min. Results showed that using a PETtrace cyclotron in this configuration provides a therapeutic ratio of about 2.4 for depths up to 4 cm inside a brain phantom. Further increase of beam current proposed by GE should significantly improve the beam quality or the treatment time and allow treating tumors at greater depths.
机译:这项研究调查了通用电气(GE)生产的PETtrace回旋加速器作为硼中子捕获疗法(BNCT)的中子源的用途。选择GE PETtrace进行这项研究是因为这种回旋加速器在许多国家的核药房和诊所中很流行;它紧凑而可靠;它产生的能量高的质子足以产生具有适合BNCT的能量和通量率的中子,并且不需要为提供中子而对设计进行重大更改。特别是考虑了标准的PETtrace 18O目标。如果在放射性同位素生产过程中产生的未使用中子可同时用于其他医学模式(例如BNCT),则回旋加速器效率可能会大大提高。对于不同的散射几何形状,在大脑模型的几个深度处,使用蒙特卡罗辐射传输代码MCNP对从目标发射的辐射产生的剂量进行了评估。考虑了各种厚度的四种不同的缓和材料:轻水,碳,重水,干旱的Fluental TM。通量率计数通过应用通量率-剂量转换因子来计算光子和中子剂量。考虑了15种不同的几何形状,并选择了30厘米厚的重水缓和剂作为最适合使用GE PETtrace回旋加速器进行BNCT的方法。根据Brookhaven医学研究反应堆(BMRR)协议,对正常大脑的最大剂量设置为12.5 RBEGy,对于使用重水慢化剂的条件,假设束流电流为60μA,则治疗时间将达到258分钟结果表明,在这种配置中使用PETtrace回旋加速器可对脑部幻影内部长达4 cm的深度提供约2.4的治疗率。 GE提出的进一步增加束流将显着改善束质量或治疗时间,并允许在更大深度处治疗肿瘤。

著录项

  • 作者

    Bosko, Andrey.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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