Schiebler Mark L, Jinzaki Masahiro, Yanagawa Masahiro, Pourmorteza Amir, Yamada Yoshitake, Kato Yoko, Wada Noriaki, Schaefer-Prokop Cornelia, Dousset Vincent, Tomiyama Noriyuki, Prokop Mathias, Lima João A, Hatabu Hiroto
Department of Radiology, University of Wisconsin School of Medicine and Public Health, 600 Highland Ave, Madison, WI 53792.
Department of Radiology, Keio University School of Medicine, Tokyo, Japan.
Radiology. 2025 Jun;315(3):e240085. doi: 10.1148/radiol.240085.
Radiologists are witnessing astonishing innovation and advancement of CT technologies and their clinical applications. This review highlights how photon-counting CT (PCCT), upright CT, and artificial intelligence (AI) may impact cardiothoracic CT applications for imaging and diagnosis. PCCT relies on new detectors that can bin the separate photon energies and allow for lower radiation dose and better spatial resolution. The clinical applications of PCCT in the coronary arteries are becoming the new standard for cardiac CT imaging. New upright CT has shown the benefits of imaging in the upright position and offers new insight into how the upright position affects biomechanics and physiology. Four-dimensional CT, which can be used to directly image perfusion, is challenging MRI and MR angiography for primacy in this area. The burgeoning role of AI and informatics is changing the way radiologists interpret and report many imaging examinations. The future is bright and promises lower radiation and intravenous contrast agent doses and higher spatial resolution, and will further incorporate deep learning to improve the effectiveness of CT.
放射科医生正在见证CT技术及其临床应用的惊人创新与进步。本综述重点介绍了光子计数CT(PCCT)、立位CT和人工智能(AI)如何影响心胸CT在成像和诊断方面的应用。PCCT依赖于新型探测器,这种探测器可以对不同的光子能量进行分组,从而实现更低的辐射剂量和更好的空间分辨率。PCCT在冠状动脉的临床应用正成为心脏CT成像的新标准。新型立位CT已显示出立位成像的优势,并为立位如何影响生物力学和生理学提供了新的见解。可用于直接成像灌注的四维CT,正在挑战MRI和磁共振血管造影在此领域的主导地位。AI和信息学的蓬勃发展正在改变放射科医生解读和报告许多影像检查的方式。未来前景光明,有望实现更低的辐射和静脉造影剂剂量以及更高的空间分辨率,并将进一步融入深度学习以提高CT的有效性。