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Electron Spin Resonance dosimetry using organic compounds (alanine and ammonium tartrate) for mixed neutron-gamma fields

机译:使用有机化合物(丙氨酸和酒石酸铵)对混合中子-伽马场进行电子自旋共振剂量测定

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摘要

Alongside with the development of Neutron Capture Therapy (NCT) and the use of thermal neutrons for radiotherapeutic purposes, many efforts have been devoted to the characterization of the beam in order to optimize therapy procedures. Reliable dose measurements should be able to determine the various (neutrons and photonic) components of the mixed beam usually employed for therapy.udThis paper studies the effect of additives such as boric and gadolinium nuclei on the sensitivity of neutron organic (alanine and ammonium tartrate) dosimeters analyzed through Electron Spin Resonance (ESR) technique (Marrale, 2014). These dosimeters were exposed to a mixed (neutron-gamma) field mainly composed of thermal neutrons. The choice of 10B and 64Gd as nuclei additives is due to their very high capture cross section for thermal neutrons. Also, after the nuclear reaction with thermal neutrons are emitted particles, which in turn release their energy in the vicinity of the reaction site (Marrale, 2008).udThe irradiation with mixed field (neutron-gamma) were performed within the thermal column of the TRIGA reactor, University of Pavia. Dosimeters readout was performed through the Electron Spin Resonance spectrometer Bruker ECS106 located at the Laboratory of Dosimetry ESR / TL of the Department of Physics and Chemistry - University of Palermo.udWe found that the addition of Gadolinium allows to largely increase the sensitivity of the dosimeters for thermal neutrons. In particular, a low concentration (5% by weight) of gadolinium oxide leads to an improvement of the sensitivity of neutrons more than 10 times. In addition, for this low content of gadolinium the photon tissue equivalence is not heavily reduced. This experimental analyses are compared with computational analyses carried out by means of Monte Carlo simulations performed with the MCNP (Monte Carlo N-Particle) transport code. A good agreement was observed for alanine dosimeters.
机译:除了中子俘获疗法(NCT)的发展和热中子用于放射治疗的目的外,人们还致力于束的表征,以优化治疗程序。可靠的剂量测量应能够确定通常用于治疗的混合束的各种(中子和光子)成分。 ud本文研究了诸如硼和g核添加剂对中子有机物(丙氨酸和酒石酸铵)敏感性的影响。 )剂量计通过电子自旋共振(ESR)技术进行了分析(Marrale,2014)。这些剂量计暴露于主要由热中子组成的混合(中子伽马)场。选择10B和64Gd作为原子核添加剂是因为它们对热中子的捕获截面非常高。同样,在与热中子发生核反应后,还会发射出粒子​​,这些粒子又将其能量释放到反应部位附近(Marrale,2008年)。 ud在混合气体的热柱内进行了混合场(中子-γ)辐照。帕维亚大学TRIGA反应堆。通过位于巴勒莫大学物理与化学系剂量学ESR / TL实验室的电子自旋共振光谱仪Bruker ECS106进行剂量计读数。 ud我们发现添加d可以大大提高剂量计的灵敏度。用于热中子。特别地,低浓度(5重量%)的氧化oxide导致中子灵敏度的提高超过10倍。另外,由于this的这种低含量,光子组织的当量没有显着降低。将该实验分析与通过使用MCNP(蒙特卡洛N粒子)运输代码进行的蒙特卡洛模拟进行的计算分析进行比较。对于丙氨酸剂量计,观察到良好的一致性。

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