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An advanced analytic method incorporating the geometrical properties of scanner and radiation emissions into the system model for the true component of 3D PET data

机译:一种先进的分析方法,将扫描仪的几何特性和辐射发射纳入系统模型,以获取3D PET数据的真实成分

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An approach to an analytic system model for the true component of 3D PET data offering the accuracy of a Monte Carlo model run for an infinite time is presented. The system model, which is used in the expectation maximisation (EM) algorithm, accounts for the 3D nature of the emission process in which the geometric sensitivity to a point source varies along and across the tube of each line of response (LOR). Therefore the system model cannot be based just on line or tube integrals as it is for the model of transmission scanning. By accounting for the varying sensitivity within each LOR in the reconstruction process unbiased and quantitatively exact images can be achieved without using calibration or scaling factors after the reconstruction process. Two approaches to the model are investigated, i.e., LOR- and voxel-driven which are validated using high statistics Monte Carlo simulation (SimSET).
机译:呈现了用于为无限时间运行的蒙特卡罗模型的准确性提供3D PET数据的分析系统模型的方法。用于期望最大化(EM)算法的系统模型,用于减少发射过程的3D性质,其中对点源的几何灵敏度沿着每行响应线(LOR)的管道变化。因此,系统模型不能仅基于线路或管数量,因为它是用于传输扫描的模型。通过在重建过程中计算每个LOR内的变化灵敏度,在重建过程之后的校准或缩放因子的情况下,可以实现不偏的和定量精确图像。研究了模型的两种方法,即使用高统计Monte Carlo仿真(Simset)验证的LOR-和Voxel驱动。

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