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用液体闪烁计数器对俄歇电子发射放射性核素的相对致死率进行分析与模拟。

Analysis and simulation of the relative lethality of Auger-electron-emitting radionuclides with a liquid-scintillation counter.

作者信息

Carles A Grau

机构信息

Departamento de Física Atómica, Molecular y de Agregados, Instituto de Matemáticas y Física Fundamental, CSIC, Madrid, Spain.

出版信息

Int J Radiat Biol. 2007 Sep;83(9):617-23. doi: 10.1080/09553000701523062.

Abstract

PURPOSE

The efficiency of strand-break induction and the counting efficiency of a liquid-scintillation counter can both be described similarly in terms of Poisson statistics. The aim of this work is to relate these two concepts, developing a simple method to simulate with a liquid-scintillation counter the relative biological effects between two different electron-emitting radionuclides.

METHODS

A gel scintillator can be used to confine the decaying nuclei into nanoscale structures of liquid water (micelles). Because the fluorescing agents of the gel lay outside the micelle structure, the low-energy electrons emitted by the decaying nucleus lose part of their energy within the micelle structure before being detected, resulting in a negative increment of the counting efficiency. The difference in the counting efficiency between two gels with micelles of different characteristic sizes is applied to simulate the relative lethality of the radionuclides.

RESULTS

The results are only qualitatively successful. A better accuracy cannot be achieved for commercial liquid-scintillation spectrometers, which have two photomultiplier tubes of identical gain. Also the comparison cannot be extended to low-Z Auger-electron-emitting radionuclides such as (55)Fe, since the micelle size effect is significantly increased by the interference of the L-Auger electrons.

CONCLUSIONS

A liquid-scintillation counter with a gain decreased by a factor of 2.5 in one of the two photomultiplier tubes would be necessary to improve the simulation of the damaging efficiency.

摘要

目的

链断裂诱导效率和液体闪烁计数器的计数效率都可以用泊松统计类似地描述。这项工作的目的是关联这两个概念,开发一种简单方法,用液体闪烁计数器模拟两种不同发射电子的放射性核素之间的相对生物学效应。

方法

凝胶闪烁体可用于将衰变的原子核限制在液态水的纳米级结构(胶束)中。由于凝胶的荧光剂位于胶束结构之外,衰变原子核发射的低能电子在被检测之前会在胶束结构内损失部分能量,导致计数效率出现负增量。应用具有不同特征尺寸胶束的两种凝胶之间计数效率的差异来模拟放射性核素的相对致死率。

结果

结果仅在定性上成功。对于具有两个增益相同的光电倍增管的商用液体闪烁光谱仪,无法获得更高的精度。而且这种比较也不能扩展到低Z俄歇电子发射放射性核素,如(55)Fe,因为L-俄歇电子的干扰会显著增加胶束尺寸效应。

结论

要改进对损伤效率的模拟,需要在两个光电倍增管之一中将增益降低2.5倍的液体闪烁计数器。

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