Grunz Jan-Peter, Huflage Henner
From the Department of Diagnostic and Interventional Radiology, University Hospital Würzburg, Würzburg, Germany (J.G., H.H.); and Department of Radiology, University of Wisconsin-Madison, Madison, WI (J.G.).
Invest Radiol. 2025 Mar 1;60(3):198-204. doi: 10.1097/RLI.0000000000001108. Epub 2024 Aug 2.
Photon-counting detectors (PCDs) have emerged as one of the most influential technical developments for medical imaging in recent memory. Surpassing conventional systems with energy-integrating detector technology in many aspects, PCD-CT scanners provide superior spatial resolution and dose efficiency for all radiological subspecialities. Demanding detailed display of trabecular microarchitecture and extensive anatomical coverage frequently within the same scan, musculoskeletal (MSK) imaging in particular can be a beneficiary of PCD-CT's remarkable performance. Since PCD-CT provides users with a plethora of customization options for both image acquisition and reconstruction, however, MSK radiologists need to be familiar with the scanner to unlock its full potential. From filter-based spectral shaping for artifact reduction over full field-of-view ultra-high-resolution scans to postprocessing of single- or dual-source multienergy data, almost every imaging task can be met with an optimized approach in PCD-CT. The objectives of this review were to give an overview of the most promising applications of PCD-CT in MSK imaging to date, to state current limitations, and to highlight directions for future research and developments.
光子计数探测器(PCD)已成为近年来医学成像领域最具影响力的技术发展之一。PCD-CT扫描仪在许多方面超越了采用能量积分探测器技术的传统系统,为所有放射学子专业提供了卓越的空间分辨率和剂量效率。特别是肌肉骨骼(MSK)成像,由于经常需要在同一扫描中详细显示小梁微结构并进行广泛的解剖覆盖,因此可以受益于PCD-CT的卓越性能。然而,由于PCD-CT为用户提供了大量图像采集和重建的定制选项,MSK放射科医生需要熟悉该扫描仪,以充分发挥其潜力。从基于滤波器的光谱整形以减少伪影到全场超高清扫描,再到单源或双源多能量数据的后处理,PCD-CT几乎可以通过优化方法满足每一项成像任务。本综述的目的是概述PCD-CT在MSK成像中迄今为止最有前景的应用,阐述当前的局限性,并突出未来研究和发展的方向。