Department of Diagnostic Radiology and Nuclear Medicine, R Adams Cowley Shock Trauma Center, University of Maryland School of Medicine, 22 S. Greene Street, Baltimore, MD.
Department of Diagnostic Radiology and Nuclear Medicine, R Adams Cowley Shock Trauma Center, University of Maryland School of Medicine, 22 S. Greene Street, Baltimore, MD.
Semin Ultrasound CT MR. 2021 Oct;42(5):418-433. doi: 10.1053/j.sult.2021.07.001. Epub 2021 Aug 1.
Dual-energy computed tomography (DE CT) is a promising tool with many current and evolving applications. Available DE CT scanners usually consist of one or two tubes, or use layered detectors for spectral separation. Most DE CT scanners can be used in single energy or dual-energy mode, except for the layered detector scanners that always acquire data in dual-energy mode. However, the layered detector scanners can retrospectively integrate the data from two layers to obtain conventional single energy images. DE CT mode enables generation of virtual monochromatic images, blended images, iodine quantification, improving conspicuity of iodinated contrast enhancement, and material decomposition maps or more sophisticated quantitative analysis not possible with conventional SE CT acquisition with an acceptable or even lower dose than the SE CT. This article reviews the basic principles of dual-energy CT and highlights many of its clinical applications in the evaluation of neurological conditions.
双能 CT(DE CT)是一种很有前途的工具,具有许多当前和不断发展的应用。现有的 DE CT 扫描仪通常由一个或两个管组成,或者使用分层探测器进行光谱分离。大多数 DE CT 扫描仪可在单能或双能模式下使用,除了分层探测器扫描仪始终以双能模式采集数据。然而,分层探测器扫描仪可以回顾性地整合来自两个层面的数据,以获得常规的单能图像。DE CT 模式可生成虚拟单色图像、混合图像、碘定量、提高碘对比增强的显影度,并提供材料分解图或更复杂的定量分析,这些都是常规 SE CT 采集所无法实现的,而且其剂量可接受,甚至低于 SE CT。本文回顾了双能 CT 的基本原理,并重点介绍了其在评估神经状况中的许多临床应用。