首页> 外文会议>Nuclear Science, Technology and Engineering Conference >Image Reconstruction of Single Photon Emission Computed Tomography (SPECT) on a Pebble Bed Reactor (PBR) Using Expectation Maximization and Exact Inversion Algorithms: Comparison Study by Means of Numerical Phantom
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Image Reconstruction of Single Photon Emission Computed Tomography (SPECT) on a Pebble Bed Reactor (PBR) Using Expectation Maximization and Exact Inversion Algorithms: Comparison Study by Means of Numerical Phantom

机译:使用预期最大化和精确反演算法的卵石床反应器(PBR)上单光子发射计算机断层扫描(SPECT)的图像重建:通过数值模拟算法的比较研究

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Single Photon Emission Computed Tomography (SPECT) is a well-known imaging technique used in medical application, and it is part of medical imaging modalities that made the diagnosis and treatment of disease possible. However, SPECT technique is not only limited to the medical sector. Many works are carried out to adapt the same concept by using high-energy photon emission to diagnose process malfunctions in critical industrial systems such as in chemical reaction engineering research laboratories, as well as in oil and gas, petrochemical and petrochemical refining industries. Motivated by vast applications of SPECT technique, this work attempts to study the application of SPECT on a Pebble Bed Reactor (PBR) using numerical phantom of pebbles inside the PBR core. From the cross-sectional images obtained from SPECT, the behavior of pebbles inside the core can be analyzed for further improvement of the PBR design. As the quality of the reconstructed image is largely dependent on the algorithm used, this work aims to compare two image reconstruction algorithms for SPECT, namely the Expectation Maximization Algorithm and the Exact Inversion Formula. The results obtained from the Exact Inversion Formula showed better image contrast and sharpness, and shorter computational time compared to the Expectation Maximization Algorithm.
机译:单光子发射计算机断层扫描(SPECT)是医学应用中使用的公知的成像技术,它是医学成像方式的一部分,使疾病的诊断和治疗成为可能。然而,SPECT技术不仅限于医学部门。通过使用高能光子发射来调整相同的概念来调整相同的概念,以诊断在化学反应工程研究实验室以及石油和天然气,石化和石化炼油行业中的关键工业系统中的工艺发生故障。通过对SPECT技术的广泛应用,这项工作试图使用PBR芯内部的鹅卵石的数值幽灵研究SPECT在卵石床反应器(PBR)上的应用。根据从SPECT获得的横截面图像,可以分析核心内的鹅卵石的行为以进一步改进PBR设计。由于重建图像的质量在很大程度上取决于所使用的算法,因此该工作旨在比较SPECT的两个图像重建算法,即期望最大化算法和精确的反演公式。与预期最大化算法相比,从确切的反转公式获得的结果显示出更好的图像对比度和清晰度,并且计算时间短。

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