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多层螺旋计算机断层扫描的发展历程与前沿原理

The evolution and state-of-the-art principles of multislice computed tomography.

作者信息

Kohl Gerhard

机构信息

Siemens Medical Solutions, CT, 1 Siemens Street, Forchheim 91301, Germany.

出版信息

Proc Am Thorac Soc. 2005;2(6):470-6, 499-500. doi: 10.1513/pats.200508-086DS.

Abstract

Computed tomography has revolutionized diagnostic radiology with the introduction of spiral CT in the early 1990s, allowing for the first time the acquisition of volume data without the danger of misregistration or double registration of anatomical details. The next revolution occurred in 1998 when all major CT manufacturers introduced multislice CT (MSCT) systems, which typically offered simultaneous acquisition of four slices, providing considerable improvement towards the goal of isotropic three-dimensional imaging. The most recent generation of MSCT systems acquire 64 slices per rotation, enabling a whole body CTA with 1,500 mm scan range and an isotropic resolution of down to 0.4 mm in only 22- 25 s. The tube and the detector measurement system belong to the most important system components of a CT system, having a large influence on system performance. For example, new rotating envelope tube design principles allow for faster rotation times and for double z-sampling techniques in order to increase resolution. The applied dose is ultimately the limiting factor for the improvement of image quality and increase in isotropic resolution. In order to make best diagnostic use of the applied dose, sophisticated dynamic dose adaptation techniques to patient size and geometry have been developed.

摘要

20世纪90年代初螺旋CT的引入给诊断放射学带来了变革,首次实现了容积数据的采集,避免了解剖细节配准错误或双重配准的风险。下一次变革发生在1998年,当时所有主要的CT制造商都推出了多层螺旋CT(MSCT)系统,通常可同时采集四层图像,朝着各向同性三维成像的目标有了显著改进。最新一代的MSCT系统每旋转一圈可采集64层图像,仅需22至25秒就能完成扫描范围达1500毫米的全身CT血管造影(CTA),各向同性分辨率低至0.4毫米。球管和探测器测量系统是CT系统最重要的系统组件,对系统性能有很大影响。例如,新的旋转管套设计原理可实现更快的旋转速度,并采用双z采样技术来提高分辨率。所施加的剂量最终是提高图像质量和增加各向同性分辨率的限制因素。为了充分利用所施加的剂量进行最佳诊断,已开发出针对患者体型和几何形状的复杂动态剂量适配技术。

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