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临床中的平板锥形束CT:历史与现状

Flat-panel conebeam CT in the clinic: history and current state.

作者信息

Fahrig Rebecca, Jaffray David A, Sechopoulos Ioannis, Webster Stayman J

机构信息

Innovation, Advanced Therapies, Siemens Healthcare GmbH, Forchheim, Germany.

Friedrich-Alexander Universitat, Department of Computer Science 5, Erlangen, Germany.

出版信息

J Med Imaging (Bellingham). 2021 Sep;8(5):052115. doi: 10.1117/1.JMI.8.5.052115. Epub 2021 Oct 28.

Abstract

Research into conebeam CT concepts began as soon as the first clinical single-slice CT scanner was conceived. Early implementations of conebeam CT in the 1980s focused on high-contrast applications where concurrent high resolution ( ), for visualization of small contrast-filled vessels, bones, or teeth, was an imaging requirement that could not be met by the contemporaneous CT scanners. However, the use of nonlinear imagers, e.g., x-ray image intensifiers, limited the clinical utility of the earliest diagnostic conebeam CT systems. The development of consumer-electronics large-area displays provided a technical foundation that was leveraged in the 1990s to first produce large-area digital x-ray detectors for use in radiography and then compact flat panels suitable for high-resolution and high-frame-rate conebeam CT. In this review, we show the concurrent evolution of digital flat panel (DFP) technology and clinical conebeam CT. We give a brief summary of conebeam CT reconstruction, followed by a brief review of the correction approaches for DFP-specific artifacts. The historical development and current status of flat-panel conebeam CT in four clinical areas-breast, fixed C-arm, image-guided radiation therapy, and extremity/head-is presented. Advances in DFP technology over the past two decades have led to improved visualization of high-contrast, high-resolution clinical tasks, and image quality now approaches the soft-tissue contrast resolution that is the standard in clinical CT. Future technical developments in DFPs will enable an even broader range of clinical applications; research in the arena of flat-panel CT shows no signs of slowing down.

摘要

早在第一台临床单排CT扫描仪问世之时,锥形束CT概念的研究就已开始。20世纪80年代锥形束CT的早期应用主要集中在高对比度应用领域,在这些应用中,为了可视化小的、充满造影剂的血管、骨骼或牙齿,同时具备高分辨率( )是当时CT扫描仪无法满足的成像要求。然而,使用非线性成像设备,例如X射线影像增强器,限制了最早的诊断性锥形束CT系统的临床应用。消费电子领域大面积显示器的发展提供了技术基础,在20世纪90年代,这一技术基础首先被用于生产用于放射摄影的大面积数字X射线探测器,然后用于生产适用于高分辨率和高帧率锥形束CT的紧凑型平板探测器。在这篇综述中,我们展示了数字平板(DFP)技术与临床锥形束CT的同步发展。我们简要总结了锥形束CT重建,随后简要回顾了针对DFP特定伪影的校正方法。介绍了平板锥形束CT在乳腺、固定C形臂、图像引导放射治疗以及四肢/头部这四个临床领域的历史发展和现状。过去二十年DFP技术的进步使得高对比度、高分辨率临床任务的可视化得到改善,并且图像质量现在已接近临床CT标准中的软组织对比分辨率。DFP未来的技术发展将实现更广泛的临床应用;平板CT领域的研究没有放缓的迹象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e5e/8553266/c1848d551438/JMI-008-052115-g001.jpg

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