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MODEL-BASED SCATTER CORRECTION FOR FULLY 3D PET

机译:完全3D PET的基于模型的散射校正

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A method is presented that directly calculates the mean number of scattered coincidences in data acquired with fully 3D positron emission tomography (PET). This method uses a transmission scan, an emission scan, the physics of Compton scatter, and a mathematical model of the scanner in a forward calculation of the number of events for which one photon has undergone a single Compton interaction. The distribution of events for which multiple Compton interactions have occurred is modelled as a linear transformation of the single-scatter distribution. Computational efficiency is achieved by sampling at rates no higher than those required by the scatter distribution and by implementing the algorithm using look-up tables. Evaluation studies in phantoms with large scatter fractions show that the method yields images with quantitative accuracy equivalent to that of slice-collimated PET in clinically useful times. [References: 37]
机译:提出了一种方法,该方法可直接计算使用全3D正电子发射断层扫描(PET)采集的数据中的分散符合的平均数。该方法使用透射扫描,发射扫描,康普顿散射的物理学原理和扫描仪的数学模型来正向计算一个光子经历了一次康普顿相互作用的事件数。发生了多个康普顿相互作用的事件的分布被建模为单散射分布的线性变换。通过以不高于散布分布所要求的速率进行采样并通过使用查找表实现该算法来实现计算效率。对具有较大散布分数的体模的评估研究表明,该方法可在临床有用时间内以定量精度等同于切片准直PET的图像。 [参考:37]

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