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用于单光子发射计算机断层扫描(SPECT)的空间变化介质中的广义双能量窗散射补偿

Generalized dual-energy-window scatter compensation in spatially varying media for SPECT.

作者信息

Smith M F, Jaszczak R J

机构信息

Department of Biomedical Engineering, Box 90281, Duke University, Durham, NC 27708, USA.

出版信息

Phys Med Biol. 1994 Mar;39(3):531-46. doi: 10.1088/0031-9155/39/3/016.

Abstract

The detection of scattered photons in the photopeak energy window hinders accurate activity estimation in single-photon-emission computed tomography (SPECT). To compensate for photons scattered in spatially varying media, a framework for generalized dual-energy-window scatter subtraction has been developed. Generalized scatter subtraction factors are introduced, and these factors are decomposed into terms dependent on the uniform (average) and spatially varying components of the source activity distribution. The variation of these factors with projection pixel location and gamma camera position is analysed for a simulated myocardial perfusion study with a 99Tc(m) source radionuclide and a non-uniform thorax model. Monte Carlo methods are used to model photon transport and detection. The application of pixel-dependent scatter subtraction factors for scatter compensation is evaluated in an image reconstruction experiment for this simulated myocardial perfusion study. Generalized matrix inverses with noise-dependent regularization are used for image reconstruction. For this simulation, use of a pixel-dependent scatter subtraction factor and a constant scatter subtraction factor are effective for scatter compensation. Activity estimates within the left ventricular myocardium for these two methods are practically the same as those obtained from image reconstructions where the detection of Compton-scattered photons is included in the system matrix.

摘要

在单光子发射计算机断层扫描(SPECT)中,光电峰能量窗内散射光子的检测会妨碍准确的活度估计。为了补偿在空间变化介质中散射的光子,已开发出一种广义双能量窗散射减法框架。引入了广义散射减法因子,并将这些因子分解为取决于源活度分布的均匀(平均)分量和空间变化分量的项。对于使用99Tc(m)源放射性核素和非均匀胸部模型的模拟心肌灌注研究,分析了这些因子随投影像素位置和伽马相机位置的变化。采用蒙特卡罗方法对光子传输和检测进行建模。在该模拟心肌灌注研究的图像重建实验中,评估了基于像素的散射减法因子在散射补偿中的应用。使用具有噪声相关正则化的广义矩阵求逆进行图像重建。对于该模拟,使用基于像素的散射减法因子和恒定散射减法因子对散射补偿有效。这两种方法在左心室心肌内的活度估计实际上与从将康普顿散射光子检测包含在系统矩阵中的图像重建所获得的估计相同。

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