Manohari M, Mathiyarasu R, Rajagopal V, Meenakshisundaram V, Indira R
Radiation Safety Section, Radiological Safety Division, Indira Gandhi Centre for Atomic Research, Kalpakkam 603 102, Tamil Nadu, India.
Radiat Prot Dosimetry. 2011 Mar;144(1-4):427-32. doi: 10.1093/rpd/ncq325. Epub 2010 Nov 2.
A phoswich detector, housed inside a low background steel room, coupled with a state-of-art pulse shape discrimination (PSD) electronics is recently established at Radiological Safety Division of IGCAR for in vivo monitoring of actinides. The various parameters of PSD electronics were optimised to achieve efficient background reduction in low-energy regions. The PSD with optimised parameters has reduced steel room background from 9.5 to 0.28 cps in the 17 keV region and 5.8 to 0.3 cps in the 60 keV region. The Figure of Merit for the timing spectrum of the system is 3.0. The true signal loss due to PSD was found to be less than 2 %. The phoswich system was calibrated with Lawrence Livermore National Laboratory realistic chest phantom loaded with (241)Am activity tagged lung set. Calibration factors for varying chest wall composition and chest wall thickness in terms of muscle equivalent chest wall thickness were established. (241)Am activity in the JAERI phantom which was received as a part of IAEA inter-comparison exercise was estimated. This paper presents the optimisation of PSD electronics and the salient results of the calibration.
一个置于低本底钢室内的磷光体探测器,与最先进的脉冲形状甄别(PSD)电子设备相结合,最近由英迪拉·甘地原子研究中心(IGCAR)放射安全部建立,用于体内锕系元素监测。对PSD电子设备的各种参数进行了优化,以在低能区域有效降低本底。参数优化后的PSD在17 keV区域将钢室本底从9.5 cps降低到0.28 cps,在60 keV区域从5.8 cps降低到0.3 cps。该系统定时谱的品质因数为3.0。发现由于PSD导致的真实信号损失小于2%。磷光体系统用装有标记肺装置的(241)Am活度的劳伦斯利弗莫尔国家实验室逼真胸部模型进行了校准。确定了根据肌肉等效胸壁厚度变化的胸壁组成和胸壁厚度的校准因子。对作为国际原子能机构比对活动一部分收到的日本原子能研究所(JAERI)模型中的(241)Am活度进行了估算。本文介绍了PSD电子设备的优化以及校准的主要结果。