Poon Darren M C, Yuan Jing, Cao Minsong, Yang Yingli, Xue Cindy, Christodouleas John P
Comprehensive Oncology Centre, Hong Kong Sanatorium & Hospital, Happy Valley, Hong Kong SAR, China.
Research Department, Hong Kong Sanatorium & Hospital, Happy Valley, Hong Kong SAR, China.
Br J Radiol. 2025 Sep 1;98(1173):1356-1368. doi: 10.1093/bjr/tqaf142.
MR-guided radiotherapy (MRgRT) using MRI integrated linear accelerator (MR-LINAC) is a critical advancement in prostate cancer (PC) treatment. Leveraging the superior soft tissue contrast of MR imaging (MRI), along with online adaptation capabilities and real-time MRI for advanced motion management, MRgRT has demonstrated efficacy in localized PC irradiation. Recent studies have demonstrated that MRgRT can effectively treat individual lymph node metastasis (LNM), with preliminary results showing excellent patient tolerability and safety as a novel metastasis-directed radiotherapy for oligometastatic PC (omPC). However, current LNM imaging on an MR-LINAC is limited and suboptimal, creating reliance on diagnostic MRI and positron emission tomography (PET) for differentiation, registration, contouring, and adaptation. The inherent uncertainty and errors within these processes impair the accuracy and precision of LNM irradiation in MRgRT. This review aims to provide an overview of the current imaging techniques employed in clinical MRgRT practice for omPC, highlighting the unmet clinical needs due to the limitations of LNM imaging using an MR-LINAC. Furthermore, it reviews promising advanced LNM MRI techniques potentially transferable to MR-LINAC. Lastly, it discusses future developments in LNM imaging on an MR-LINAC and its potential as a comprehensive one-stop imaging solution for future omPC MRgRT.
使用磁共振成像集成直线加速器(MR-LINAC)的磁共振引导放疗(MRgRT)是前列腺癌(PC)治疗中的一项关键进展。借助磁共振成像(MRI)卓越的软组织对比度,以及在线自适应能力和用于高级运动管理的实时MRI,MRgRT已在局限性PC放疗中显示出疗效。最近的研究表明,MRgRT可以有效治疗个体淋巴结转移(LNM),初步结果显示,作为一种针对寡转移PC(omPC)的新型转移灶定向放疗,患者耐受性和安全性良好。然而,目前MR-LINAC上的LNM成像有限且不理想,这使得在区分、配准、轮廓勾画和自适应方面依赖于诊断性MRI和正电子发射断层扫描(PET)。这些过程中固有的不确定性和误差损害了MRgRT中LNM照射的准确性和精确性。本综述旨在概述目前在omPC临床MRgRT实践中采用的成像技术,强调由于使用MR-LINAC进行LNM成像的局限性而未满足的临床需求。此外,还综述了有望转移到MR-LINAC的先进LNM MRI技术。最后,讨论了MR-LINAC上LNM成像的未来发展及其作为未来omPC MRgRT综合一站式成像解决方案的潜力。