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首页> 外文期刊>Physics in medicine and biology. >Model-based correction for scatter and tailing effects in simultaneous 99mTc and 123I imaging for a CdZnTe cardiac SPECT camera.
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Model-based correction for scatter and tailing effects in simultaneous 99mTc and 123I imaging for a CdZnTe cardiac SPECT camera.

机译:基于模型的CdZnTe心脏SPECT相机同时99mTc和123I成像中散射和拖尾效应的校正。

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摘要

An advantage of semiconductor-based dedicated cardiac single photon emission computed tomography (SPECT) cameras when compared to conventional Anger cameras is superior energy resolution. This provides the potential for improved separation of the photopeaks in dual radionuclide imaging, such as combined use of (99m)Tc and (123)I . There is, however, the added complexity of tailing effects in the detectors that must be accounted for. In this paper we present a model-based correction algorithm which extracts the useful primary counts of (99m)Tc and (123)I from projection data. Equations?describing the in-patient scatter and tailing effects in the detectors are iteratively solved for both radionuclides simultaneously using a maximum a posteriori probability algorithm with one-step-late evaluation. Energy window-dependent parameters for the equations?describing in-patient scatter are estimated using Monte Carlo simulations. Parameters for the equations?describing tailing effects are estimated using virtually scatter-free experimental measurements on a dedicated cardiac SPECT camera with CdZnTe-detectors. When applied to a phantom study with both (99m)Tc and (123)I, results show that the estimated spatial distribution of events from (99m)Tc in the (99m)Tc photopeak energy window is very similar to that measured in a single (99m)Tc phantom study. The extracted images of primary events display increased cold lesion contrasts for both (99m)Tc and (123)I.
机译:与传统的Anger相机相比,基于半导体的专用心脏心脏单光子发射计算机断层摄影(SPECT)相机的优势在于出色的能量分辨率。这提供了在双放射性核素成像中,例如(99m)Tc和(123)I的组合使用中改善光峰分离的潜力。然而,必须考虑到检测器中拖尾效应的增加的复杂性。在本文中,我们提出了一种基于模型的校正算法,该算法从投影数据中提取有用的主要计数(99m)Tc和(123)I。使用最大后验概率算法和一步一步评估,同时描述了两种放射性核素的描述探测器中患者散射和拖尾效应的方程式。使用蒙特卡洛模拟法估计描述患者分散的方程的能量窗口相关参数。在配备CdZnTe探测器的专用心脏SPECT相机上,使用几乎无散射的实验测量值来估算描述拖尾效应的方程式参数。当应用于同时具有(99m)Tc和(123)I的幻像研究时,结果表明(99m)Tc光峰能量窗口中来自(99m)Tc的事件的估计空间分布与单次测量的空间分布非常相似。 (99m)Tc幻影研究。原发事件的提取图像显示(99m)Tc和(123)I的冷病变对比度增加。

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