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Full 3-D cluster-based iterative image reconstruction tool for a small animal PET camera

机译:小型动物PET相机基于完整3D簇的迭代图像重建工具

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摘要

Iterative reconstruction methods are commonly used to obtain images with high resolution and good signal-to-noise ratio in nuclear imaging. The aim of this work was to develop a scalable, fast, cluster based, fully 3-D iterative image reconstruction package for our small animal PET camera, the miniPET. The reconstruction package is developed to determine the 3-D radioactivity distribution from list mode type of data sets and it can also simulate noise-free projections of digital phantoms. We separated the system matrix generation and the fully 3-D iterative reconstruction process. As the detector geometry is fixed for a given camera, the system matrix describing this geometry is calculated only once and used for every image reconstruction, making the process much faster. The Poisson and the random noise sensitivity of the ML-EM iterative algorithm were studied for our small animal PET system with the help of the simulation and reconstruction tool. The reconstruction tool has also been tested with data collected by the miniPET from a line and a cylinder shaped phantom and also a rat.
机译:迭代重建方法通常用于获得核成像中具有高分辨率和良好信噪比的图像。这项工作的目的是为我们的小型动物PET相机miniPET开发可扩展,快速,基于群集的全3D迭代图像重建程序包。重建套件的开发旨在根据列表模式数据集确定3-D放射性分布,它还可以模拟数字体模的无噪声投影。我们分离了系统矩阵生成和完全3D迭代重建过程。由于检测器的几何形状对于给定的摄像机是固定的,因此描述该几何形状的系统矩阵仅计算一次,并用于每次图像重建,从而使处理过程更快。借助仿真和重构工具,对我们的小动物PET系统研究了ML-EM迭代算法的Poisson和随机噪声敏感性。重建工具也已通过miniPET从生产线和圆柱体模型以及老鼠身上收集的数据进行了测试。

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