Si Guangxiang, Du Yue, Tang Peng, Ma Gao, Jia Zhaochen, Zhou Xiaoyue, Mu Dan, Shen Yan, Lu Yi, Mao Yu, Chen Chuan, Li Yan, Gu Ning
Jiangsu Key Laboratory for Biomaterials and Devices, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210009, China.
Key Laboratory for Bio-Electromagnetic Environment and Advanced Medical Theranostics, School of Biomedical Engineering and Informatics, Nanjing Medical University, Nanjing 210029, China.
Natl Sci Rev. 2024 Feb 7;11(5):nwae057. doi: 10.1093/nsr/nwae057. eCollection 2024 May.
Contrast-enhanced magnetic resonance imaging (CE-MRI) is a pivotal tool for global disease diagnosis and management. Since its clinical availability in 2009, the off-label use of ferumoxytol for ferumoxytol-enhanced MRI (FE-MRI) has significantly reshaped CE-MRI practices. Unlike MRI that is enhanced by gadolinium-based contrast agents, FE-MRI offers advantages such as reduced contrast agent dosage, extended imaging windows, no nephrotoxicity, higher MRI time efficiency and the capability for molecular imaging. As a leading superparamagnetic iron oxide contrast agent, ferumoxytol is heralded as the next generation of contrast agents. This review delineates the pivotal clinical applications and inherent technical superiority of FE-MRI, providing an avant-garde medical-engineering interdisciplinary lens, thus bridging the gap between clinical demands and engineering innovations. Concurrently, we spotlight the emerging imaging themes and new technical breakthroughs. Lastly, we share our own insights on the potential trajectory of FE-MRI, shedding light on its future within the medical imaging realm.
对比增强磁共振成像(CE-MRI)是疾病整体诊断和管理的关键工具。自2009年临床应用以来,非那雄胺用于非那雄胺增强磁共振成像(FE-MRI)的超说明书使用显著重塑了CE-MRI的实践。与基于钆的造影剂增强的MRI不同,FE-MRI具有造影剂用量减少、成像窗口延长、无肾毒性、MRI时间效率更高以及分子成像能力等优点。作为一种领先的超顺磁性氧化铁造影剂,非那雄胺被誉为下一代造影剂。本综述阐述了FE-MRI的关键临床应用和固有的技术优势,提供了一个前沿的医学-工程跨学科视角,从而弥合临床需求与工程创新之间的差距。同时,我们重点介绍了新兴的成像主题和新的技术突破。最后,我们分享了对FE-MRI潜在发展轨迹的见解,揭示其在医学成像领域的未来。