Xu Wenzhe, Wang Changjian, Ma Yiming, Fang Chunfeng, Gong Hanshun, Zhang Gaolong, Qu Baolin, Xu Shouping
School of Physics, Beihang University, Beijing 100191, P. R.China;Department of Radiotherapy, PLA General Hospital, Beijing 100853, P. R. China.
Department of Radiotherapy, Yizhou Tumor Hospital, Zhuozhou, Hebei 072750, P. R. China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2021 Feb 25;38(1):161-168. doi: 10.7507/1001-5515.202002029.
Image-guided radiation therapy using magnetic resonance imaging (MRI) is a new technology that has been widely studied and developed in recent years. The technology combines the advantages of MRI imaging, and can offer online real-time tracking of tumor and adjacent organs at risk, as well as real-time optimization of radiotherapy plan. In order to provide a comprehensive understanding of this technology, and to grasp the international development and trends in this field, this paper reviews and summarizes related researches, so as to make the researchers and clinical personnel in this field to understand recent status of this technology, and carry out corresponding researches. This paper summarizes the advantages of MRI and the research progress of MRI linear accelerator (MR-Linac), online guidance, adaptive optimization, and dosimetry-related research. Possible development direction of these technologies in the future is also discussed. It is expected that this review can provide a certain reference value for clinician and related researchers to understand the research progress in the field.
使用磁共振成像(MRI)的图像引导放射治疗是近年来得到广泛研究和发展的一项新技术。该技术结合了MRI成像的优势,能够对肿瘤及邻近危险器官进行在线实时追踪,以及对放射治疗计划进行实时优化。为了全面了解这项技术,并把握该领域的国际发展情况及趋势,本文对相关研究进行综述和总结,以便该领域的研究人员和临床人员了解该技术的最新状况,并开展相应研究。本文总结了MRI的优势以及MRI直线加速器(MR-Linac)、在线引导、自适应优化和剂量学相关研究的进展情况。还讨论了这些技术未来可能的发展方向。期望本综述能为临床医生和相关研究人员了解该领域的研究进展提供一定的参考价值。