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Feasibility Study of Compton Scattering Enhanced Multiple Pinhole Imager for Nuclear Medicine

机译:康普顿散射增强型多针孔成像仪在核医学中的可行性研究

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摘要

This paper presents a feasibility study of a Compton scattering enhanced (CSE) multiple pinhole imaging system for gamma rays with energy of 140keV or higher. This system consists of a multiple-pinhole collimator, a position sensitive scintillation detector as used in standard Gamma camera, and a Silicon pad detector array, inserted between the collimator and the scintillation detector. The problem of multiplexing, normally associated with multiple pinhole system, is reduced by using the extra information from the detected Compton scattering events. In order to compensate for the sensitivity loss, due to the low probability of detecting Compton scattered events, the proposed detector is designed to collect both Compton scattering and Non-Compton events. It has been shown that with properly selected pinhole spacing, the proposed detector design leads to an improved image quality.
机译:本文提出了针对140keV或更高能量的伽马射线的康普顿散射增强(CSE)多针孔成像系统的可行性研究。该系统包括一个多针孔准直仪,一个用于标准Gamma相机的位置敏感型闪烁探测器以及一个插入在准直仪和闪烁探测器之间的硅垫探测器阵列。通过使用来自检测到的康普顿散射事件的额外信息,可以减少通常与多个针孔系统相关的多路复用问题。为了补偿灵敏度损失,由于检测康普顿散射事件的可能性较低,建议将检测器设计为收集康普顿散射事件和非康普顿事件。已经表明,通过适当选择针孔间距,提出的检测器设计可提高图像质量。

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