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双能CT:医学成像的新前沿。

Dual-Energy CT: New Horizon in Medical Imaging.

作者信息

Goo Hyun Woo, Goo Jin Mo

机构信息

Department of Radiology and Research Institute of Radiology, Asan Medical Center, University of Ulsan College of Medicine, Seoul 05505, Korea.

Department of Radiology, Seoul National University College of Medicine, Seoul 03080, Korea.

出版信息

Korean J Radiol. 2017 Jul-Aug;18(4):555-569. doi: 10.3348/kjr.2017.18.4.555. Epub 2017 May 19.

Abstract

Dual-energy CT has remained underutilized over the past decade probably due to a cumbersome workflow issue and current technical limitations. Clinical radiologists should be made aware of the potential clinical benefits of dual-energy CT over single-energy CT. To accomplish this aim, the basic principle, current acquisition methods with advantages and disadvantages, and various material-specific imaging methods as clinical applications of dual-energy CT should be addressed in detail. Current dual-energy CT acquisition methods include dual tubes with or without beam filtration, rapid voltage switching, dual-layer detector, split filter technique, and sequential scanning. Dual-energy material-specific imaging methods include virtual monoenergetic or monochromatic imaging, effective atomic number map, virtual non-contrast or unenhanced imaging, virtual non-calcium imaging, iodine map, inhaled xenon map, uric acid imaging, automatic bone removal, and lung vessels analysis. In this review, we focus on dual-energy CT imaging including related issues of radiation exposure to patients, scanning and post-processing options, and potential clinical benefits mainly to improve the understanding of clinical radiologists and thus, expand the clinical use of dual-energy CT; in addition, we briefly describe the current technical limitations of dual-energy CT and the current developments of photon-counting detector.

摘要

在过去十年中,双能量CT的应用一直未得到充分利用,这可能是由于工作流程繁琐以及当前的技术限制。临床放射科医生应了解双能量CT相对于单能量CT的潜在临床优势。为实现这一目标,应详细阐述双能量CT的基本原理、当前的采集方法及其优缺点,以及作为双能量CT临床应用的各种物质特异性成像方法。当前的双能量CT采集方法包括带或不带光束过滤的双管、快速电压切换、双层探测器、分裂滤波器技术和序列扫描。双能量物质特异性成像方法包括虚拟单能或单色成像、有效原子序数图、虚拟非增强成像、虚拟去钙成像、碘图、吸入氙图、尿酸成像、自动去骨和肺血管分析。在本综述中,我们重点关注双能量CT成像,包括与患者辐射暴露相关的问题、扫描和后处理选项,以及潜在的临床优势,主要是为了提高临床放射科医生的认识,从而扩大双能量CT的临床应用;此外,我们简要描述了双能量CT当前的技术限制以及光子计数探测器的当前发展情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa4d/5447632/24fd9044a4c8/kjr-18-555-g001.jpg

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