Endo S, Hoshi M, Takada J, Tauchi H, Matsuura S, Takeoka S, Kitagawa K, Suga S, Komatsu K
Department of Radiation Biology, Hiroshima University, Japan.
J Radiat Res. 1999 Dec;40 Suppl:14-20. doi: 10.1269/jrr.40.s14.
Dosimetry studies have been made for neutrons from a neutron generator at Hiroshima University (HIRRAC) which is designed for radiobiological research. Neutrons in an energy range from 0.07 to 2.7 MeV are available for biological irradiations. The produced neutron energies were measured and evaluated by a 3He-gas proportional counter. Energy spread was made certain to be small enough for radiobiological studies. Dose evaluations were performed by two different methods, namely use of tissue equivalent paired ionization chambers and activation of method with indium foils. Moreover, energy deposition spectra in small targets of tissue equivalent materials, so-called lineal energy spectrum, were also measured and are discussed. Specifications for biological irradiation are presented in terms of monoenergetic beam conditions, dose rates and deposited energy spectra.
已对广岛大学的一台用于放射生物学研究的中子发生器(HIRRAC)产生的中子进行了剂量学研究。能量范围在0.07至2.7 MeV之间的中子可用于生物辐照。通过3He气体正比计数器测量并评估了产生的中子能量。确定能量展宽对于放射生物学研究来说足够小。采用两种不同方法进行剂量评估,即使用组织等效成对电离室和铟箔活化法。此外,还测量并讨论了组织等效材料小靶中的能量沉积谱,即所谓的线能量谱。从单能束条件、剂量率和沉积能谱方面给出了生物辐照的规范。