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首页> 外文期刊>Radiation and Environmental Biophysics >Formation of ionization clusters in nanometric structures of propane-based tissue-equivalent gas or liquid water by electrons and alpha-particles
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Formation of ionization clusters in nanometric structures of propane-based tissue-equivalent gas or liquid water by electrons and alpha-particles

机译:通过电子和α粒子在丙烷基组织等效气体或液态水的纳米结构中形成电离簇

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摘要

Despite the importance of ionization yield formation in sub-cellular structures a few nanometres in size, with regard to radiation damage our present knowl-edge in this respect is almost exclusively based on cross section sets for water vapour or liquid water. Experimental data, although urgently needed, are still missing because the direct measurement of ionization yields in sub-cellular structures or, at least, in nanometric volumes of liquid water, is not yet possible. The vbest feasivble way to overcome this problem of measurement at present, is the use of highly sophisticated counters filled with gases at low operating pressure to simulate target volumes a few nanometres in diameter at unit density. An indispensable prerequisite of the reliability of such measurements is, however, a check of the equivalence of the ionization yield produced in a specified target gas and the yield to be expected in liquid water or biological material. For this purpose, the ionization yield formation by electrons and alpha-particles in liquid water was simulated using the Monte Carlo method and compared with that produced in propane-based tissue-equivalent gas (composition by volume 55% C_3H_8, 39.6% CO_2, 5.4% N_2). After a short summary of the most important physical aspects of ionization cluster formation, new results are presented and discussed from the point of view of radiation physics and radiation biology.
机译:尽管在几纳米大小的亚细胞结构中形成电离产率非常重要,但就辐射损伤而言,我们目前在这方面的知识几乎完全基于水蒸气或液态水的横截面集合。尽管迫切需要实验数据,但仍无法获得,因为尚无法直接测量亚细胞结构或至少纳米级液态水的电离率。目前解决此测量问题的最可行的方法是使用在低工作压力下充满气体的高度复杂的计数器来模拟单位密度下直径为几纳米的目标体积。然而,这种测量的可靠性必不可少的前提是检查在特定目标气体中产生的电离产率与液态水或生物材料中预期的产率的等价性。为此,使用蒙特卡罗方法模拟了液态水中电子和α粒子形成的电离产率,并将其与丙烷基组织当量气体(体积分数为55%C_3H_8、39.6%CO_2、5.4 %N_2)。在简短总结了电离簇形成的最重要物理方面之后,从辐射物理学和辐射生物学的角度提出并讨论了新的结果。

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