From the Department of Surgical Medical Sciences and Translational Medicine, Sapienza University of Rome - Radiology Unit, Sant'Andrea University Hospital, Rome, Italy.
J Comput Assist Tomogr. 2023;47(2):244-254. doi: 10.1097/RCT.0000000000001401. Epub 2022 Dec 13.
Image reconstruction processing in computed tomography (CT) has evolved tremendously since its creation, succeeding at optimizing radiation dose while maintaining adequate image quality. Computed tomography vendors have developed and implemented various technical advances, such as automatic noise reduction filters, automatic exposure control, and refined imaging reconstruction algorithms.Focusing on imaging reconstruction, filtered back-projection has represented the standard reconstruction algorithm for over 3 decades, obtaining adequate image quality at standard radiation dose exposures. To overcome filtered back-projection reconstruction flaws in low-dose CT data sets, advanced iterative reconstruction algorithms consisting of either backward projection or both backward and forward projections have been developed, with the goal to enable low-dose CT acquisitions with high image quality. Iterative reconstruction techniques play a key role in routine workflow implementation (eg, screening protocols, vascular and pediatric applications), in quantitative CT imaging applications, and in dose exposure limitation in oncologic patients.Therefore, this review aims to provide an overview of the technical principles and the main clinical application of iterative reconstruction algorithms, focusing on the strengths and weaknesses, in addition to integrating future perspectives in the new era of artificial intelligence.
计算机断层扫描(CT)中的图像重建处理自问世以来经历了巨大的发展,成功地在保持足够图像质量的同时优化了辐射剂量。CT 供应商已经开发并实施了各种技术进步,例如自动降噪滤波器、自动曝光控制和改进的成像重建算法。聚焦于成像重建,滤波反投影在过去 30 多年来一直是标准的重建算法,在标准辐射剂量暴露下获得足够的图像质量。为了克服低剂量 CT 数据集滤波反投影重建的缺陷,已经开发了基于后向投影或后向和前向投影的高级迭代重建算法,目的是实现高质量的低剂量 CT 采集。迭代重建技术在常规工作流程实施(例如,筛查方案、血管和儿科应用)、定量 CT 成像应用以及肿瘤患者的剂量暴露限制中发挥着关键作用。因此,本综述旨在概述迭代重建算法的技术原理和主要临床应用,重点介绍其优缺点,此外还整合了人工智能新时代的未来展望。