Unit of Diagnostic Imaging, Department of Medical Sciences, University of Siena, Azienda Ospedaliero-Universitaria Senese, Siena, Italy.
Diagnostic Imaging Unit, Department of Diagnostic Imaging, Azienda USL-Toscana Sud-Est, Poggibonsi, Valdelsa, Italy.
Semin Ultrasound CT MR. 2023 Jun;44(3):205-213. doi: 10.1053/j.sult.2023.03.006. Epub 2023 Mar 21.
Dual-energy CT (DECT) imaging makes it possible to identify the characteristics of materials that cannot be recognized with conventional single-energy CT (SECT). In the postprocessing study phase, virtual monochromatic images and virtual-non-contrast (VNC) images, also permits reduction of dose exposure by eliminating the precontrast acquisition scan. Moreover, in virtual monochromatic images, the iodine contrast increases when the energy level decreases resulting in better visualization of hypervascular lesions and in a better tissue contrast between hypovascular lesions and the surrounding parenchyma; thus, allowing for reduction of required iodinate contrast material, especially important in patients with renal impairment. All these advantages are particularly important in oncology, providing the possibility of overcoming many SECT imaging limits and making CT examinations safer and more feasible in critical patients. This review explores the basis of DECT imaging and its utility in routine oncologic clinical practice, with particular attention to the benefits of this technique for both the patients and the radiologists.
双能 CT(DECT)成像使得识别常规单能 CT(SECT)无法识别的材料特性成为可能。在后处理研究阶段,虚拟单能图像和虚拟非对比(VNC)图像也可以通过消除对比前采集扫描来降低剂量暴露。此外,在虚拟单能图像中,随着能量水平的降低,碘对比剂增加,从而更好地可视化高血管性病变,并在低血管性病变与周围实质之间获得更好的组织对比度;因此,可以减少所需的碘造影剂,这在肾功能受损的患者中尤为重要。所有这些优势在肿瘤学中尤为重要,为克服许多 SECT 成像限制提供了可能性,并使 CT 检查在危重症患者中更安全、更可行。本文探讨了 DECT 成像的基础及其在常规肿瘤临床实践中的应用,特别关注该技术对患者和放射科医生的益处。