Pessis Eric, Sverzut Jean-Michel, Campagna Raphaël, Guerini Henri, Feydy Antoine, Drapé Jean-Luc
Department of Radiology, Centre Cardiologique du Nord, Saint Denis, France.
Department of Radiology B, Hôpital Cochin, Université Paris Descartes, Paris, France.
Semin Musculoskelet Radiol. 2015 Dec;19(5):446-55. doi: 10.1055/s-0035-1569256. Epub 2015 Dec 22.
Imaging of patients with metal implants is a common activity for radiologists, and overcoming metal artifacts during computed tomography (CT) is still a challenge. Virtual monochromatic spectral (VMS) imaging with dual-energy CT has been reported to reduce beam-hardening metal artifact effectively. Dual-energy CT allows the synthesis of VMS images. Monochromatic images depict how the imaged object would look if the X-ray source produced X-ray photons at only a single-energy level. For this reason, VMS imaging improve image quality by reducing beam-hardening artifacts. Additional metal artifact reduction postprocessing such as metal artifact reduction software can be applied to improve the visualization of the bone-prosthesis interface, periprosthetic areas, and soft tissue near and far from the metal implant. This article summarizes how virtual monochromatic images are synthesized from dual-energy CT, and it describes and illustrates our clinical experience with a single-source dual-energy scanner with fast kilovoltage switching to reduce beam hardening in patients with metal implants.
对有金属植入物的患者进行成像检查是放射科医生的一项常见工作,而在计算机断层扫描(CT)过程中克服金属伪影仍是一项挑战。据报道,双能CT的虚拟单色光谱(VMS)成像可有效减少束硬化金属伪影。双能CT能够合成VMS图像。单色图像描绘了如果X射线源仅产生单一能量水平的X射线光子时,成像对象会呈现出的样子。因此,VMS成像通过减少束硬化伪影来提高图像质量。还可以应用额外的减少金属伪影后处理技术,如金属伪影减少软件,以改善骨假体界面、假体周围区域以及金属植入物附近和远处软组织的可视化效果。本文总结了如何从双能CT合成虚拟单色图像,并描述和阐述了我们使用具有快速千伏切换功能的单源双能扫描仪减少金属植入物患者束硬化的临床经验。