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A novel compensation method for the anode gain non-uniformity of multi-anode photomultiplier tubes

阳极 光电倍增管 补偿(心理学) 材料科学 光学 物理 探测器 电极 精神分析 心理学 量子力学
作者
Chan Mi Lee,Sun Il Kwon,Guen Bae Ko,Mikiko Ito,Hyun Suk Yoon,Dong Soo Lee,S. J. Hong,Jae Sung Lee
出处
期刊:Physics in Medicine and Biology [IOP Publishing]
卷期号:57 (1): 191-207 被引量:13
标识
DOI:10.1088/0031-9155/57/1/191
摘要

The position-sensitive multi-anode photomultiplier tube (MA-PMT) is widely used in high-resolution scintillation detectors. However, the anode gain nonuniformity of this device is a limiting factor that degrades the intrinsic performance of the detector module. The aim of this work was to develop a gain compensation method for the MA-PMT and evaluate the resulting enhancement in the performance of the detector. The method employs a circuit that is composed only of resistors and is placed between the MA-PMT and a resistive charge division network (RCN) used for position encoding. The goal of the circuit is to divide the output current from each anode, so the same current flows into the RCN regardless of the anode gain. The current division is controlled by the combination of a fixed-value series resistor with an output impedance that is much larger than the input impedance of the RCN, and a parallel resistor, which detours part of the current to ground. PSpice simulations of the compensation circuit and the RCN were performed to determine optimal values for the compensation resistors when used with Hamamatsu H8500 MAPMTs. The intrinsic characteristics of a detector module consisting of this MA-PMT and a lutetium-gadolinium-oxyorthosilicate (LGSO) crystal array were tested with and without the gain compensation method. In simulation, the average coefficient of variation and max/min ratio decreased from 15.7% to 2.7% and 2.0 to 1.2, respectively. In the flood map of the LGSO-H8500 detector, the uniformity of the photopeak position for individual crystals and the energy resolution were much improved. The feasibility of the method was shown by applying it to an octagonal prototype positron emission tomography scanner.

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