首页> 外文期刊>Iranian Journal of Nuclear Medicine >Comparative assessment of the accuracy of maximum likelihood and correlated signal enhancement algorithm positioning methods in gamma camera with large square photomultiplier tubes
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Comparative assessment of the accuracy of maximum likelihood and correlated signal enhancement algorithm positioning methods in gamma camera with large square photomultiplier tubes

机译:大型光电倍增管伽马相机中最大似然和相关信号增强算法定位方法的比较评估

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Introduction: The gamma cameras, based on scintillation crystal followed by an array of photomultiplier tubes (PMTs), play a crucial role in nuclear medicine. The use of square PMTs provides the minimum dead zones in the camera. The camera with square PMTs also reduces the number of PMTs relative to the detection area. Introduction of a positioning algorithm to improve the spatial resolution in the detector with square PMT have been of interest in recent years. Methods: In this study, the maximum-likelihood and correlated signal enhancement positioning methods were implemented in a camera with square PMTs. The developed camera consists of 3/8” thick monolithic NaI(Tl) crystal coupled to the array of 76mm sized PMTs. The comparison is based on measuring full width at half maximum (FWHM) and standard deviation of FWHM of point sources in a 15×15 grid of samples with 2-mm grid spacing, produced using MLE and CSE positioning methods. Results:The intrinsic spatial resolution in (x, y) directions was (3.8, 3.8), (4.3, 4.5) mm for CSE and MLE methods respectively. Also, the standard deviations was almost the same in both methods (0.5 and 0.6 for CSE and MLE respectively). Although by applying MLE method, the resolution degrades by 16% but the produced image introduced acceptable quality. Conclusion: The results show the MLE method presented acceptable performance in comparison to CSE method as reference in the detector with large square PMTs. Note that the MLE method does not require any linearity correction process because it can estimate the exact position of events.
机译:简介:基于闪烁晶体的伽马相机,然后是一系列光电倍增管(PMTS),在核医学中发挥至关重要的作用。方形PMTS的使用为相机中的最小死区提供。具有方形PMTS的相机还减少了相对于检测区域的PMT的数量。引入定位算法,以提高探测器中的空间分辨率,方形PMT近年来对此感兴趣。方法:在该研究中,在具有方形PMT的相机中实现了最大似然和相关信号增强定位方法。开发的相机由3/8“厚整体Nai(TL)晶体组成,耦合到76mm尺寸的PMTS阵列。比较是基于在半峰值的半最大(FWHM)中的全宽度(FWHM),以及使用2mm栅格间隔的15×15网格中的点源的FWHM的标准偏差,使用MLE和CSE定位方法生产。结果:SSE和MLE方法的(x,y)方向的固有空间分辨率分别为(3.8,3.8),(4.3,4.5)mm。此外,两种方法中标准偏差几乎相同(分别为CSE和MLE 0.5和0.6)。虽然通过应用MLE方法,但分辨率降低了16%,但产生的图像引入了可接受的质量。结论:结果表明,与CSE方法相比,MLE方法呈现可接受的性能,作为具有大方形PMT的探测器中的探测器。请注意,MLE方法不需要任何线性校正过程,因为它可以估计事件的确切位置。

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