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使用质子轰击铍(p+轰击Be)或氘核轰击铍(d+轰击Be)产生的治疗性中子束进行的放射生物学研究。

Radiobiological studies with therapeutic neutron beams generated by p+ leads to Be or d+ leads to Be.

作者信息

Hall E J, Zaider M, Bird R, Astor M, Roberts W

出版信息

Br J Radiol. 1982 Sep;55(657):640-4. doi: 10.1259/0007-1285-55-657-640.

Abstract

Mammalian cells cultured in vitro were used to study the radiobiological characteristics of neutron beams generated by 43 MeV protons on beryllium or 25 MeV deutrons on beryllium. For an unfiltered beam of neutrons generated by 43 MeV p+ leads to Be the relative biological effectiveness was found to be 8-12% higher at a depth of 2 cm than at a depth of 12 cm due to the presence of a large component of low-energy neutrons. The addition of a hydrogenous filter 4 cm thick preferentially removed the low-energy neutrons from the beam and, as a result, the neutron RBE was independent of depth. There was no significant difference in the oxygen enhancement ratio between the filtered neutrons produced by 43 Mev p+ leads to Be and neutrons produced by 25 MeV d+ leads to Be; for both beams the OER value was about 1.6.

摘要

体外培养的哺乳动物细胞被用于研究由43兆电子伏质子轰击铍或25兆电子伏氘核轰击铍产生的中子束的放射生物学特性。对于由43兆电子伏质子轰击铍产生的未过滤中子束,由于存在大量低能中子成分,在2厘米深度处的相对生物效能比在12厘米深度处高8 - 12%。添加4厘米厚的含氢滤片可优先从束流中去除低能中子,结果中子的相对生物效应与深度无关。由43兆电子伏质子轰击铍产生的过滤中子与由25兆电子伏氘核轰击铍产生的中子之间的氧增强比没有显著差异;对于这两种束流,氧增强比值约为1.6。

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