首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A new method for position determination of scintillation pixel in PET detector module using simulation LUT and MLPE
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A new method for position determination of scintillation pixel in PET detector module using simulation LUT and MLPE

机译:一种新方法,用于使用模拟LUT和MLPE测定PET检测器模块中的闪烁像素的位置

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摘要

A new method was developed to determine the positions where the scintillation pixels and gamma rays of the positron emission tomography (PET) detector module interact A simulation look-up table (LUT) was created to determine the positions of the scintillation pixels via maximum likelihood position estimate (MLPE). To create the LUT, a DETECT2000 simulation was performed using a 6 x 6 array of scintillation pixels and SiPM photo sensor with a 4 x 4 array. The light signals obtained through the gamma interaction generated at the center of each scintillation pixel were reduced to 4 channels through the Anger equation, and the LUT was created using the ratios of each channel. As a result of applying this data obtained by an experiment, it showed an accuracy of 90%. Although the LUT was created by the simulation, this method can be applied to the conventional detector module because the position of the scintillation pixel is determined through MLPE using the ratio of each channel. When using this new method, it is possible to obtain the position of the scintillation pixel as digital coordinates without performing additional processes by changing a conventional system.
机译:开发了一种新方法以确定正电子发射断层扫描(PET)检测器模块交互的闪烁像素和伽马射线的位置,以通过最大似然位置确定闪烁像素的位置估计(MLPE)。要创建LUT,请使用带有4×4阵列的6 x 6阵列的闪烁像素和SIPM光电传感器进行检测到2000模拟。通过在每个闪烁像素的中心产生的伽马相互作用获得的光信号通过愤怒方程减少到4个通道,并且使用每个通道的比率创建LUT。由于应用通过实验获得的该数据,它显示了90%的准确性。尽管通过模拟创建了LUT,但是该方法可以应用于传统检测器模块,因为使用每个通道的比率通过MLPE确定闪烁像素的位置。当使用这种新方法时,可以通过改变传统系统来获得闪烁像素作为数字坐标的位置的位置。

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