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首页> 外文期刊>Indian Journal of Nuclear Medicine >Optimization of scatter correction method in samarium-153 single-photon emission computed tomography using triple-energy window: A monte carlo simulation study
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Optimization of scatter correction method in samarium-153 single-photon emission computed tomography using triple-energy window: A monte carlo simulation study

机译:三维能源窗口钐-153单光子发射计算断层扫描的散点校正方法优化:蒙特卡罗模拟研究

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Purpose: In single-photon emission computed tomography imaging, the presence of scatter degrades image quality. The goal of this study is to optimize the main- and sub-energy windows for triple-energy window (TEW) method using Monte Carlo SImulating Medical Imaging Nuclear Detectors (SIMIND) code for samarium-153 (Sm-153) imaging. Materials and Methods: The comparison is based on the Monte Carlo simulation data with the results estimated using TEW method. Siemens Symbia gamma-camera equipped with low-energy high-resolution collimator was simulated for Sm-153 point source located in seven positions in water cylindrical phantom. Three different main-energy window widths (10%, 15%, and 20%) and three different sub-energy window widths (2, 4, and 6 keV) were evaluated. We compared the true scatter fraction determined by SIMIND and scatter fraction estimated using TEW scatter correction method at each position. In order to evaluate the image quality, we used the full width at half maximum (FWHM) computed on the PSF and image contrast using Jaszczak phantom. Results: The scatter fraction using TEW method is similar to the true scatter fraction for 20% of the main-energy window and 6 keV sub-energy windows. For these windows, the results show that the resolution and contrast were improved. Conclusion: TEW method could be a useful scatter correction method to remove the scatter event in the image for Sm-153 imaging.
机译:目的:在单光子发射计算断层摄影成像中,散射的存在降低了图像质量。本研究的目标是使用Monte Carlo模拟钐-153(SM-153)成像的Monte Carlo模拟医学成像核检测器(Simind)代码来优化三维能量窗口(TEW)方法的主能窗口。材料和方法:比较基于Monte Carlo模拟数据,结果使用仪表方法估计。 Siemens Symbia伽玛相机配备了低能量高分辨率准直器的SM-153点源,位于水圆柱模型中的七个位置。评估三种不同的主能窗口宽度(10%,15%和20%)和三种不同的子能窗宽度(2,4和6keV)。我们将通过在每个位置处的仪表散射校正方法估计的模拟和散射分数测定的真正散射部分。为了评估图像质量,我们使用Jaszczak Phantom计算的PSF和图像对比度的半个最大(FWHM)的全宽度。结果:使用TEW方法的散射级分类似于20%的主能窗口和6keV子能量窗口的真正散射分数。对于这些窗口,结果表明分辨率和对比度得到改善。结论:TEW方法可以是一种有用的散射校正方法,用于去除图像中的散射事件以进行SM-153成像。

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