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Improving Positron Emission Tomography with Guided Filtering

机译:用引导过滤改善正电子发射断层扫描

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Positron emission tomography (PET) is a nuclear medicine imaging technique that is used to observe tissue metabolism by reconstructing the spatial distribution of the injected radioactive tracer. Due to constraints on the time and the radiation dose of the examination as well as limited scanner sensitivity, PET images usually suffer from a high level of noise. This paper focuses on the application of the guided filter for PET image denoising. After proposing several different guidance images, guided filter variants are compared with the median, the Gaussian and the bilateral filter in terms of image quality and speed. For dynamic PET reconstructions, a new approach, the parametric filtering is conceived, in which filtering is performed on the parameters of the kinetic model describing the radiotracer concentration. Finally, an efficient, guided-filter-based partial volume correction (PVC) method is proposed to restore accurate activity values that are blurred due to the partial volume effect.
机译:正电子发射断层扫描(PET)是一种核医学成像技术,用于通过重建注射放射性示踪剂的空间分布来观察组织代谢。由于时间和辐射剂量的约束以及有限的扫描仪灵敏度,PET图像通常遭受高水平的噪声。本文侧重于宠物图像去噪的引导滤波器的应用。在提出几种不同的引导图像之后,在图像质量和速度方面将引导滤波器变体与中值,高斯和双边滤波器进行比较。对于动态宠物重建,一种新的方法,构思了参数滤波,其中对描述放射性机构浓度的动力学模型的参数进行滤波。最后,提出了一种高效的导向滤波器的部分体积校正(PVC)方法以恢复由于部分体积效应而模糊的精确活动值。

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