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Optimization of Energy-Window Settings for Scatter Correction in Quantitative 111In Imaging: Comparison of Measurements and Monte Carlo Simulations

机译:定量111IN成像中散射校正的能量窗口设置的优化:测量和蒙特卡罗模拟的比较

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摘要

Activity quantification in nuclear medicine imaging is highly desirable, particularly for dosimetry and biodistribution studies of radiopharmaceuticals. Quantitative (111)In imaging is increasingly important with the current interest in therapy using (90)Y radiolabeled antibodies. One of the major problems in quantification is scatter in the images, which leads to degradation of image quality. The aim of this study was to optimize the energy-window settings for quantitative (111)In imaging with a camera that enabled acquisition in three energy windows. Experimental measurements and Monte Carlo simulations, using the SI-MIND code, were conducted to investigate parameters such as sensitivity, image contrast, and image resolution. Estimated scatter-to-total ratios and distributions, as obtained by the different window settings, were compared with corresponding simulations. Results showed positive agreement between experimental measurements and results from simulations, both quantitatively and qualitatively. We conclude that of the investigated methods, the optimal energy-window setting was two windows centered at 171 and 245 keV, together with a broad scatter window located between the photopeaks.
机译:核医学成像中的活性量化是非常理想的,特别是用于放射性药物的剂量测定和生物分布研究。成像中的定量(111)对使用(90)y放射性标记抗体的当前对治疗的兴趣越来越重要。量化中的一个主要问题是在图像中分散,这导致图像质量的降低。本研究的目的是优化定量(111)的能量窗口设置,以便在具有在三个能量窗口中启用采集的相机进行成像。使用SI-MINE代码进行实验测量和蒙特卡罗模拟,以研究诸如灵敏度,图像对比度和图像分辨率之类的参数。通过不同的窗口设置获得的估计散射到总比率和分布与相应的模拟相比。结果显示实验测量与模拟的结果之间的积极协议,这些结果是定量和定性的。我们得出结论,所研究的方法,最佳能量 - 窗口设置是以171和245 kev为中心的两个窗口,以及位于PhotoPaks之间的宽散射窗口。

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