From the Department of Radiology, Mayo Clinic, 200 1st St SW, Rochester, MN, 55905 (J.G.F., A.I., A.B., K.K.H., C.W.K., P.S.R., F.I.B., C.H.M., L.Y.); Department of Radiology, Shiga University of Medical Science, Shiga, Japan (A.I.); Department of Radiology, NYU Grossman School of Medicine, NYU Langone Health, New York, NY (J.P.K.); and IMALLIANCE-Haut-de-France, Valenciennes, France (M.R.J.).
Radiology. 2024 Mar;310(3):e231986. doi: 10.1148/radiol.231986.
Photon-counting CT (PCCT) is an emerging advanced CT technology that differs from conventional CT in its ability to directly convert incident x-ray photon energies into electrical signals. The detector design also permits substantial improvements in spatial resolution and radiation dose efficiency and allows for concurrent high-pitch and high-temporal-resolution multienergy imaging. This review summarizes key differences in PCCT image acquisition and image reconstruction compared with conventional CT; early evidence for the clinical benefit of PCCT for high-spatial-resolution diagnostic tasks in thoracic imaging, such as assessment of airway and parenchymal diseases, as well as benefits of high-pitch and multienergy scanning; anticipated radiation dose reduction, depending on the diagnostic task, and increased utility for routine low-dose thoracic CT imaging; adaptations for thoracic imaging in children; potential for further quantitation of thoracic diseases; and limitations and trade-offs. Moreover, important points for conducting and interpreting clinical studies examining the benefit of PCCT relative to conventional CT and integration of PCCT systems into multivendor, multispecialty radiology practices are discussed.
光子计数 CT(PCCT)是一种新兴的先进 CT 技术,与常规 CT 不同,它能够直接将入射 X 射线光子能量转换为电信号。探测器设计还允许在空间分辨率和辐射剂量效率方面有实质性的提高,并允许同时进行高螺距和高时间分辨率的多能量成像。本综述总结了与常规 CT 相比,PCCT 图像采集和图像重建的关键差异;PCCT 在胸部成像中的高空间分辨率诊断任务中的临床获益的早期证据,例如气道和实质疾病的评估,以及高螺距和多能量扫描的益处;根据诊断任务,预期的辐射剂量降低,以及对常规低剂量胸部 CT 成像的更多用途;在儿童胸部成像中的适应性;对胸部疾病进行进一步定量的潜力;以及局限性和权衡。此外,还讨论了开展和解释临床研究的要点,这些研究检查了 PCCT 相对于常规 CT 的益处,以及将 PCCT 系统整合到多供应商、多专业放射科实践中的要点。