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基于脉冲快中子活化分析法提高人体成分分析仪的安全性

Improving the safety of a body composition analyser based on the PGNAA method.

作者信息

Miri-Hakimabad Hashem, Izadi-Najafabadi Reza, Vejdani-Noghreiyan Alireza, Panjeh Hamed

机构信息

FUM Radiation Detection And Measurement Laboratory, Ferdowsi University of Mashhad, Iran.

出版信息

J Radiol Prot. 2007 Dec;27(4):457-64. doi: 10.1088/0952-4746/27/4/006. Epub 2007 Nov 27.

Abstract

The 252Cf radioisotope and 241Am-Be are intense neutron emitters that are readily encapsulated in compact, portable and sealed sources. Some features such as high flux of neutron emission and reliable neutron spectrum of these sources make them suitable for the prompt gamma neutron activation analysis (PGNAA) method. The PGNAA method can be used in medicine for neutron radiography and body chemical composition analysis. 252Cf and 241Am-Be sources generate not only neutrons but also are intense gamma emitters. Furthermore, the sample in medical treatments is a human body, so it may be exposed to the bombardments of these gamma-rays. Moreover, accumulations of these high-rate gamma-rays in the detector volume cause simultaneous pulses that can be piled up and distort the spectra in the region of interest (ROI). In order to remove these disadvantages in a practical way without being concerned about losing the thermal neutron flux, a gamma-ray filter made of Pb must be employed. The paper suggests a relatively safe body chemical composition analyser (BCCA) machine that uses a spherical Pb shield, enclosing the neutron source. Gamma-ray shielding effects and the optimum radius of the spherical Pb shield have been investigated, using the MCNP-4C code, and compared with the unfiltered case, the bare source. Finally, experimental results demonstrate that an optimised gamma-ray shield for the neutron source in a BCCA can reduce effectively the risk of exposure to the 252Cf and 241Am-Be sources.

摘要

252Cf放射性同位素和241Am-Be是强中子发射体,很容易封装在紧凑、便携且密封的源中。这些源的一些特性,如高中子发射通量和可靠的中子能谱,使其适用于瞬发伽马中子活化分析(PGNAA)方法。PGNAA方法可用于医学中的中子射线照相和人体化学成分分析。252Cf和241Am-Be源不仅产生中子,而且还是强伽马发射体。此外,医学治疗中的样本是人体,因此可能会受到这些伽马射线的轰击。而且,这些高剂量伽马射线在探测器体积内的累积会导致同时产生脉冲,这些脉冲可能会堆积起来并使感兴趣区域(ROI)的能谱发生畸变。为了切实消除这些缺点而又不必担心热中子通量的损失,必须采用由铅制成的伽马射线过滤器。本文提出了一种相对安全的人体化学成分分析仪(BCCA),该仪器使用球形铅屏蔽罩来包围中子源。利用MCNP-4C代码研究了伽马射线屏蔽效果和球形铅屏蔽罩的最佳半径,并与未过滤的情况(裸源)进行了比较。最后,实验结果表明BCCA中用于中子源的优化伽马射线屏蔽罩可以有效降低暴露于252Cf和241Am-Be源的风险。

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