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基于模型的重建用于致密三结构各向同性颗粒的增强型X射线计算机断层扫描

Model-based reconstruction for enhanced x-ray CT of dense tri-structural isotropic particles.

作者信息

Venkatakrishnan Singanallur, Ziabari Amir Koushyar, Bingham Philip, Helmreich Grant

出版信息

Appl Opt. 2022 Feb 20;61(6):C73-C79. doi: 10.1364/AO.439579.

DOI:10.1364/AO.439579
PMID:35201000
Abstract

Tri-structural isotropic (TRISO) fuel particles are a key component of next generation nuclear fuels. Using x-ray computed tomography (CT) to characterize TRISO particles is challenging because of the strong attenuation of the x-ray beam by the uranium core, leading to severe photon starvation in a substantial fraction of the measurements. Furthermore, the overall acquisition time for a high-resolution CT scan can be very long when using conventional laboratory-based x-ray systems and reconstruction algorithms. Specifically, when analytic methods such as the Feldkamp-Davis-Kress (FDK) algorithm are used for reconstruction, it results in severe streak artifacts and noise in the corresponding 3D volume, which makes subsequent analysis of the particles challenging. In this paper, we develop and apply model-based image reconstruction (MBIR) algorithms to improve the quality of CT reconstructions for TRISO particles to facilitate better characterization. We demonstrate that the proposed MBIR algorithms can significantly suppress artifacts with minimal pre-processing compared to conventional approaches. We also demonstrate that the proposed MBIR approach can obtain high-quality reconstruction compared to the FDK approach even when using a fraction of the typically acquired measurements, thereby enabling dramatically faster measurement times for TRISO particles.

摘要

三结构各向同性(TRISO)燃料颗粒是下一代核燃料的关键组成部分。由于铀芯对X射线束的强烈衰减,使用X射线计算机断层扫描(CT)来表征TRISO颗粒具有挑战性,这会导致在很大一部分测量中出现严重的光子饥饿现象。此外,当使用传统的基于实验室的X射线系统和重建算法时,高分辨率CT扫描的总体采集时间可能会非常长。具体而言,当使用诸如费尔德坎普-戴维斯-克雷斯(FDK)算法等解析方法进行重建时,会在相应的三维体积中产生严重的条纹伪影和噪声,这使得对颗粒的后续分析变得具有挑战性。在本文中,我们开发并应用基于模型的图像重建(MBIR)算法来提高TRISO颗粒CT重建的质量,以便于更好地表征。我们证明,与传统方法相比,所提出的MBIR算法在进行最少预处理的情况下能够显著抑制伪影。我们还证明,与FDK方法相比,即使使用通常采集测量值的一小部分,所提出的MBIR方法也能够获得高质量的重建结果,从而能够大幅缩短TRISO颗粒的测量时间。

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