闪烁相机中光子探测的建模

S. Ali, Xianling Dong, A. Noor, F. Rokhani, S. Hashim, M. I. Saripan
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引用次数: 1

摘要

硅酮光电倍增管(SiPM)技术是近年来引入的光子检测技术。与传统的光电倍增管(pmt)相比,这种类型的探测器具有各种优势。SiPM的尺寸更小,因此占用的空间更少。在医学成像领域,利用SiPM进行图像采集已经有了一些研究。本研究的目的是利用SiPM探测器建立闪烁相机的固有分辨率模型。通过实验确定了光源与SiPM探测器之间的最佳距离,获得了3.7 mm的内禀分辨率。该分辨率基于东芝GCA 7100A平台与碘化钠(NaI)闪烁体(40 × 40 × 0.9525 cm3)的先前研究。结果表明,SiPM需要放置在距离光源14.36 mm的位置才能表示闪烁相机的固有分辨率。结果表明,SiPM探测器可用于模拟当前闪烁相机的固有分辨率,具有取代现有光电倍增管探测器的巨大潜力。
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Modelling of light photons detection in scintillation camera
Silicone photomultiplier (SiPM) technology have been introduced recently for photons detection. This type of detector offer various advantages compare to the conventional photomultiplier tubes (PMTs). SiPM are smaller in size and thus consumes less space. Several researches have been conducted using SiPM for image acquisition in the field of medical imaging. The aim of this research is to model the intrinsic resolution of a scintillation camera using SiPM detector. Experiments are conducted to determine the optimum distance between the light source and the SiPM detector to obtain an intrinsic resolution of 3.7 mm. The resolution is base on previous research using Toshiba GCA 7100A platform with Sodium Iodide (NaI) scintillator (40 × 40 × 0.9525 cm3). Results revealed that the SiPM needs to be placed at a distance of 14.36 mm from the light source to represent the scintillation camera intrinsic resolution. It is concluded that the SiPM detector can be used to model the current scintillation camera intrinsic resolution and have a huge potential to replace the current photomultiplier tube detector.
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