基于模型的双同位素SPECT串扰补偿方法的数学观测器研究

X. Song, E. Frey, X. He, W. Segars, B. Tsui
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引用次数: 4

摘要

我们之前已经开发了一种基于模型的方法来补偿同时获取Tc-99m应力和Tl-201静息心肌灌注SPECT时的串扰。本研究的目的是利用数学渠道化酒店观察者(CHO)研究来评估该方法在缺陷检测任务方面的性能。在本研究中,我们还优化了重构Tl分布的迭代次数。一群男性和女性NCAT幻影被用来真实地模拟患者的变异。使用SimSET/PHG代码和我们新开发并验证的角响应函数(ARF)方法模拟Tc和Tl的无缺陷和存在缺陷数据,以模拟同时采集和单独采集。泊松噪声按临床实际水平建模。利用滤波反向投影(FBP)和有序子集期望最大化(OSEM)算法重构Tl数据,并在有无基于模型的串扰补偿(MBC)的情况下进行了多达20次的迭代。采用CHO方法和受试者工作特征(receiver operating characteristic, ROC)分析短轴Tl图像,得到ROC曲线和ROC曲线下面积(area under ROC curve, AUC)。分别用FBP和OSEM算法重建的数据进行了AUC值的比较。结果表明,对于本研究使用的0.16 pixel/sup -1/的构造后滤波截止频率,相对较少的迭代次数(/spl sim/3)是最优的。同时,使用MBC获得的AUC值也明显优于不加串扰补偿和单独使用FBP重建方法获得的AUC值。
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A mathematical observer study for evaluation of a model-based compensation method for crosstalk in simultaneous dual isotope SPECT
We have previously developed a model-based method to compensate for the crosstalk in simultaneous acquisition of Tc-99m stress and Tl-201 rest myocardial perfusion SPECT. The purpose of this study is to evaluate the performance of this method in terms of a defect detection task using a mathematical Channelized Hoteling Observer (CHO) study. In this study we also optimized the iteration number in reconstruction of Tl distributions. A population of male and female NCAT phantoms were used to realistically model variation in patients. Both defect-free and defect-present data of Tc and Tl were simulated using the SimSET/PHG codes and our newly developed and validated angular response function (ARF) method to mimic simultaneous acquisition and separate acquisition. Poisson noise was modeled at clinically realistic levels. The Tl data were reconstructed using filtered backprojection (FBP) and ordered subset expectation maximization (OSEM) algorithms for up to 20 iterations with and without the model-based crosstalk compensation (MBC). CHO methodology and receiver operating characteristic (ROC) analysis were applied to short axis Tl images to obtain ROC curves and area under ROC curves (AUC). The AUC values were compared with those from separately acquired data reconstructed using FBP and OSEM algorithms. The results show that a relatively small number of iteration (/spl sim/3) is optimal for the postreconstruction filtering cutoff frequency of 0.16 pixel/sup -1/ used in this study. Also, the AUC values obtained with the MBC were significantly better than those without crosstalk compensation and those with the FBP reconstruction method applied to the separately acquired data.
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