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A small gamma camera combined with a uniformly redundant array (URA) collimator: the performance evaluation using detective quantum efficiency (DQE)

机译:一个小伽马相机与均匀冗余的阵列(URA)准直器结合使用:使用侦探量子效率(DQE)的性能评估

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The gamma scintillation camera systems are recently used in various industrial, environmental and medical diagnostic fields. Moreover, the portable use in various fields is possible using miniaturized gamma camera systems. The necessity of objective and quantitative factors for the performance evaluation of gamma camera systems increase as the usefulness of these systems increase. The detective quantum efficiency(DQE), which is already applied to the performance evaluation of x-ray imaging systems, was partially revised and applied to our gamma camera system. In this study, our gamma camera system consisted of a scintillation crystal, a PSPMT with 5-inch diameter and read-out electronics. The four collimators, three pinhole collimators with different pinhole diameters and a coded-aperture collimator using uniformly redundant array (URA), were manufactured for imaging experiments. In the result, the spatial resolution slightly decrease as pinhole diameter increase because of thick scintillation material for high energy photons detection. The normalized noise power spectra obviously decrease as pinhole diameter increase because of signal to noise ratio. Finally, the DQE increase as pinhole diameter increase. The highest DQE was presented by the URA collimator. In spite of slightly low spatial resolution, URA present highest performance because of very low noise power. Our results present interrelation with conventional evalauting factors, for example, FWHM and uniformity. We found that DQE can be effectively used to evaluate imaging performance of gamma camera systems.
机译:伽玛闪烁相机系统最近用于各种工业,环境和医疗诊断领域。此外,使用小型伽马摄像机系统可以进行各种领域的便携式用途。随着这些系统的有用性增加,伽马相机系统绩效评估的客观和定量因素的必要性随着这些系统的有用性而增加。已经应用于X射线成像系统的性能评估的侦探量子效率(DQE)被部分修改并应用于我们的伽马相机系统。在这项研究中,我们的伽玛相机系统由闪烁晶体,具有5英寸直径和读出电子产品的PSPMT。使用均匀冗余阵列(URA)的四个准直器,具有不同针孔直径的三个针孔准直器和使用均匀冗余阵列(URA)的编码孔径准直器进行成像实验。结果,由于针孔直径增加,空间分辨率随着用于高能光子检测的厚的闪烁材料而略微降低。由于信号到噪声比,归一化噪声功率谱显然随着针孔直径的增加而降低。最后,DQE随着针孔直径的增加而增加。最高DQE由URA准直器提出。尽管空间分辨率略微低,但由于极低的噪音功率,URA具有最高的性能。我们的结果与常规评估因素存在相互关联,例如FWHM和均匀性。我们发现DQE可以有效地用于评估伽马相机系统的成像性能。

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