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16排多层螺旋计算机断层扫描:基本概念、协议及增强的临床应用

Sixteen-row multislice computed tomography: basic concepts, protocols, and enhanced clinical applications.

作者信息

Cademartiri Filippo, Luccichenti Giacomo, van Der Lugt Aad, Pavone Paolo, Pattynama Peter M, de Feyter Pim J, Krestin Gabriel P

机构信息

Department of Radiology, Erasmus Medical Center, Rotterdam, The Netherlands.

出版信息

Semin Ultrasound CT MR. 2004 Feb;25(1):2-16. doi: 10.1053/j.sult.2003.12.002.

Abstract

Since its introduction, spiral computed tomography (CT) technology underwent a continuous and fast technical and clinical development. In particular, spatial and temporal resolutions were constantly increased during the last decade. The main breakthrough for clinical application was the introduction of multislice technology, first with 2-row and 4-row equipment and more recently with 16-row scanners. A high-resolution sub-millimeter CT dataset can be acquired easily, although with an increased x-ray exposure for the patient. The high speed of the scan requires up-to-date and careful protocol optimization. Scanner technology and geometry affect image formation procedure and imaging protocols should be adapted accordingly. The technical foundations of spiral CT imaging and the main scan and reconstruction parameters are described in this article. Updated protocols and clinical examples of the latest applications are also discussed.

摘要

自螺旋计算机断层扫描(CT)技术问世以来,它经历了持续且快速的技术和临床发展。特别是在过去十年中,空间和时间分辨率不断提高。临床应用的主要突破是多层技术的引入,最初是2排和4排设备,最近则是16排扫描仪。尽管患者的X射线暴露量增加,但可以轻松获取高分辨率的亚毫米CT数据集。扫描速度快要求进行最新且仔细的协议优化。扫描仪技术和几何形状会影响图像形成过程,成像协议应相应调整。本文描述了螺旋CT成像的技术基础以及主要的扫描和重建参数。还讨论了最新应用的更新协议和临床实例。

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