首页> 外文会议>International Symposium on Biological and Medical Data Analysis(ISBMDA 2004); 20041118-19; Barcelona(ES) >An Accurate and Parallelizable Geometric Projector/Backprojector for 3D PET Image Reconstruction
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An Accurate and Parallelizable Geometric Projector/Backprojector for 3D PET Image Reconstruction

机译:用于3D PET图像重建的精确且可并行的几何投影仪/背投仪

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C code for an accurate projector/backprojector for Positron Emission Tomography (PET) image reconstruction has been developed. Iterative PET image reconstruction methods are supported by a pro-jection/backprojection step built inside of any of such algorithms. It is not surprising that a more precise modeling of the forward process of the measurement will yield better results when solving the inverse problem of image reconstruction. Among the factors that can be include in this forward model are 7-ray scatter contributions, attenuation, positron range, photon non-collinearity, crystal characteristics. Currently, we only include the geometric tube of response (TOR) modeling for a generic multi-ring scanner device. The elements in the transition matrix are calculated by a high statistics Monte Carlo simulation, taking advantage of the inherent symmetries and then the nonzero elements stored in a run length encoding incremental fashion. The resulting projector/backprojector is a voxel driven implementation. We show some preliminary results for 3D ML-EM reconstructions on synthetic phantom simulated data.
机译:已经开发出用于正电子发射断层扫描(PET)图像重建的精确投影仪/背投仪的C代码。迭代PET图像重建方法由在任何此类算法内部构建的投射/反投影步骤支持。当解决图像重建的逆问题时,对测量的正向过程进行更精确的建模会产生更好的结果也就不足为奇了。在该正向模型中可以包括的因素包括7射线散射贡献,衰减,正电子范围,光子非共线性,晶体特性。当前,我们仅包括通用多环扫描仪设备的几何响应管(TOR)建模。转换矩阵中的元素是通过高统计蒙特卡罗模拟计算的,其中利用了固有对称性,然后以游程长度编码增量方式存储了非零元素。生成的投影仪/背投仪是体素驱动的实现。我们在合成体模模拟数据上显示了3D ML-EM重建的一些初步结果。

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