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The detective quantum efficiency (DQE) for evaluating the performance of a small gamma camera system with a uniformly redundant array (URA) collimator

机译:用于评估带有均匀冗余阵列(URA)准直仪的小型伽马相机系统性能的探测量子效率(DQE)

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Presently, the gamma scintillation camera is widely used in various industrial, environmental and medical diagnostic fields. Hence, the objective and quantitative evaluation of its imaging performance is required for imaging quality assurance and excessive exposures prevention. In this study, the detective quantum efficiency (DQE) of a small gamma camera with three pinholes (1, 2, and 4 mm in hole diameter) and one-coded aperture (uniformly redundant array (URA); 286 holes, hole diameter 2 mm) collimator was determined using modulation transfer function (MTF), normalized noise power spectrum (NNPS), and incoming signal-to-noise ratio (SNR). We found that the resolution of URA was a little lower than that of the pinhole, 2 mm in hole diameter, and the noise of URA was prominently lower than that of all pinholes. Thus, the DQE of URA was higher than that of the pinhole. We found that the determination of DQE could be a quantitative and effective method to evaluate gamma camera systems performances.
机译:当前,伽玛闪烁照相机广泛用于各种工业,环境和医学诊断领域。因此,需要对其成像性能进行客观和定量的评估,以确保成像质量和防止过度曝光。在这项研究中,具有三个针孔(孔径分别为1、2和4 mm)和一个编码孔径(均匀冗余阵列(URA); 286个孔径,孔径为2)的小型伽马相机的探测量子效率(DQE)使用调制传递函数(MTF),归一化噪声功率谱(NNPS)和输入信噪比(SNR)确定准直仪。我们发现URA的分辨率比针孔的分辨率略低,孔径为2 mm,URA的噪声明显低于所有针孔的分辨率。因此,URA的DQE高于针孔的DQE。我们发现DQE的确定可能是评估伽马相机系统性能的定量和有效方法。

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