From the Department of Radiology, Mayo Clinic, 200 1st St SW, Rochester, MN 55905.
Radiology. 2023 Oct;309(1):e230803. doi: 10.1148/radiol.230803.
In 1971, the first patient CT examination by Ambrose and Hounsfield paved the way for not only volumetric imaging of the brain but of the entire body. From the initial 5-minute scan for a 180° rotation to today's 0.24-second scan for a 360° rotation, CT technology continues to reinvent itself. This article describes key historical milestones in CT technology from the earliest days of CT to the present, with a look toward the future of this essential imaging modality. After a review of the beginnings of CT and its early adoption, the technical steps taken to decrease scan times-both per image and per examination-are reviewed. Novel geometries such as electron-beam CT and dual-source CT have also been developed in the quest for ever-faster scans and better in-plane temporal resolution. The focus of the past 2 decades on radiation dose optimization and management led to changes in how exposure parameters such as tube current and tube potential are prescribed such that today, examinations are more customized to the specific patient and diagnostic task than ever before. In the mid-2000s, CT expanded its reach from gray-scale to color with the clinical introduction of dual-energy CT. Today's most recent technical innovation-photon-counting CT-offers greater capabilities in multienergy CT as well as spatial resolution as good as 125 μm. Finally, artificial intelligence is poised to impact both the creation and processing of CT images, as well as automating many tasks to provide greater accuracy and reproducibility in quantitative applications.
1971 年,Ambrose 和 Hounsfield 进行了首例患者 CT 检查,为脑容积成像乃至全身容积成像铺平了道路。从最初 5 分钟扫描 180°旋转,到如今 0.24 秒扫描 360°旋转,CT 技术不断推陈出新。本文描述了从 CT 早期到现在的 CT 技术的关键历史里程碑,并展望了这一重要成像方式的未来。在回顾 CT 的起源及其早期应用之后,本文回顾了为缩短每次扫描和每次检查的扫描时间而采取的技术步骤。为了实现更快的扫描和更好的平面时间分辨率,还开发了电子束 CT 和双源 CT 等新颖的几何结构。在过去 20 年中,重点关注辐射剂量优化和管理,导致了管电流和管电压等曝光参数的规定发生了变化,使得今天的检查比以往任何时候都更能针对特定患者和诊断任务进行定制。在 2000 年代中期,随着双能 CT 的临床应用,CT 从灰度扩展到了彩色。如今,最新的技术创新——光子计数 CT——为多能量 CT 以及与 125 μm 相当的空间分辨率提供了更好的性能。最后,人工智能有望影响 CT 图像的生成和处理,并实现许多任务的自动化,从而提高定量应用的准确性和可重复性。