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Iterative CT reconstruction using LabPET#x2122; detector modules

机译:使用Labpet™检测器模块的迭代CT重建

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A computed tomography (CT) simulator has been built using the LabPET™ detectors and front-end electronics. Acquisitions of energy-binned data sets were made using this low spatial resolution CT system in photon counting mode. To retrieve maximum accuracy out of these acquisitions, an iterative reconstruction library was developed and tested. Construction of the system matrix is based on a preliminary raster scan from which the experimental detector response is obtained. A meticulous description of the system geometry and misalignment corrections is imperative and must be incorporated into the matrix definition to achieve good image quality. Using this method, no sinogram pre-correction or interpolation is necessary and measured projections can be used as raw input data for the iterative reconstruction algorithm. CT and fused PET/CT images show that LabPET™ detectors can be successfully used as individual X-ray photon counting devices for low-dose CT imaging of the anatomy in a molecular PET imaging context.
机译:使用Labpet™探测器和前端电子设备构建了计算机断层扫描(CT)模拟器。在光子计数模式下使用该低空间分辨率CT系统进行能量-Binned数据集。要从这些采集中检索最大精度,开发并测试了一个迭代重建库。系统矩阵的结构基于获得实验检测器响应的初步光栅扫描。系统几何和错位校正的一丝不苟描述是必要的,并且必须纳入矩阵定义以实现良好的图像质量。使用此方法,不需要铭度预校正或插值,并且测量的投影可以用作迭代重建算法的原始输入数据。 CT和融合PET / CT图像显示,Labpet™检测器可以成功用作分子PET成像背景下解剖学的低剂量CT成像的单独X射线光子计数装置。

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