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X射线计算机断层扫描

X-ray computed tomography.

作者信息

Kalender Willi A

机构信息

Institute of Medical Physics, University Erlangen-Nuernberg, Henkestr. 91, D-91052 Erlangen, Germany.

出版信息

Phys Med Biol. 2006 Jul 7;51(13):R29-43. doi: 10.1088/0031-9155/51/13/R03. Epub 2006 Jun 20.

Abstract

X-ray computed tomography (CT), introduced into clinical practice in 1972, was the first of the modern slice-imaging modalities. To reconstruct images mathematically from measured data and to display and to archive them in digital form was a novelty then and is commonplace today. CT has shown a steady upward trend with respect to technology, performance and clinical use independent of predictions and expert assessments which forecast in the 1980s that it would be completely replaced by magnetic resonance imaging. CT not only survived but exhibited a true renaissance due to the introduction of spiral scanning which meant the transition from slice-by-slice imaging to true volume imaging. Complemented by the introduction of array detector technology in the 1990s, CT today allows imaging of whole organs or the whole body in 5 to 20 s with sub-millimetre isotropic resolution. This review of CT will proceed in chronological order focussing on technology, image quality and clinical applications. In its final part it will also briefly allude to novel uses of CT such as dual-source CT, C-arm flat-panel-detector CT and micro-CT. At present CT possibly exhibits a higher innovation rate than ever before. In consequence the topical and most recent developments will receive the greatest attention.

摘要

X射线计算机断层扫描(CT)于1972年引入临床实践,是现代断层成像模式中的第一种。从测量数据中进行数学图像重建,并以数字形式显示和存档这些图像,在当时是一项新奇事物,而如今已司空见惯。CT在技术、性能和临床应用方面一直呈稳步上升趋势,尽管在20世纪80年代有预测和专家评估称它将被磁共振成像完全取代。CT不仅存活了下来,而且由于螺旋扫描的引入迎来了真正的复兴,螺旋扫描意味着从逐层成像向真正的容积成像转变。20世纪90年代引入的阵列探测器技术进一步完善了CT,如今CT能够在5到20秒内以亚毫米各向同性分辨率对整个器官或全身进行成像。本文对CT的综述将按时间顺序进行,重点关注技术、图像质量和临床应用。在最后部分还将简要提及CT的新用途,如双源CT、C臂平板探测器CT和微型CT。目前CT的创新速度可能比以往任何时候都要快。因此,当前和最新的发展将受到最大关注。

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