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A Method to Include Single Photon Events in Image Reconstruction for a 1 mm Resolution PET System Built with Advanced 3-D Positioning Detectors

机译:一种使用先进的3-D位置检测器构建的分辨率为1 mm的PET系统,在图像重建中包括单光子事件的方法

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We are developing cadmium zinc telluride detectors with three-dimensional photon positioning capabilities for high-resolution PET imaging. These detectors exhibit high spatial resolution (1 mm), energy resolution (2.5% full width at half maximum for 511 keV photons), and the ability to resolve individual Compton interactions within the detector. Using these measurements, non-coincident single photons can be reconstructed by estimating the incoming direction of the photon using the kinematics of Compton scatter within the detector. In this paper, we investigated image reconstruction methods for combining two different types of measurements: conventional coincidence photon events and non-coincident single photon events. We introduce a new image reconstruction method that uses a Bayesian projector function. Using Monte Carlo simulated data generated by GATE (Geant4), we showed that this new approach has the potential to improve contrast and resolution with comparable signal-to-noise ratio.
机译:我们正在开发具有三维光子定位能力的碲化镉锌探测器,以用于高分辨率PET成像。这些探测器具有很高的空间分辨率(1毫米),能量分辨率(对于511 keV光子,其半峰全宽为2.5%),并具有解决探测器内各个Compton相互作用的能力。使用这些测量,可以使用检测器内的康普顿散射运动学估计光子的入射方向,从而重构非一致的单个光子。在本文中,我们研究了结合两种不同类型测量值的图像重建方法:常规重合光子事件和非重合单光子事件。我们介绍一种使用贝叶斯投影仪功能的新图像重建方法。使用由GATE(Geant4)生成的蒙特卡洛模拟数据,我们证明了这种新方法具有以可比的信噪比改善对比度和分辨率的潜力。

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