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基于磁共振线性加速器组合的立体定向磁共振引导自适应与非自适应放射治疗:当前实践与未来方向。

Stereotactic Magnetic Resonance-Guided Adaptive and Non-Adaptive Radiotherapy on Combination MR-Linear Accelerators: Current Practice and Future Directions.

作者信息

Bryant John Michael, Weygand Joseph, Keit Emily, Cruz-Chamorro Ruben, Sandoval Maria L, Oraiqat Ibrahim M, Andreozzi Jacqueline, Redler Gage, Latifi Kujtim, Feygelman Vladimir, Rosenberg Stephen A

机构信息

Department of Radiation Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.

出版信息

Cancers (Basel). 2023 Mar 30;15(7):2081. doi: 10.3390/cancers15072081.

Abstract

Stereotactic body radiotherapy (SBRT) is an effective radiation therapy technique that has allowed for shorter treatment courses, as compared to conventionally dosed radiation therapy. As its name implies, SBRT relies on daily image guidance to ensure that each fraction targets a tumor, instead of healthy tissue. Magnetic resonance imaging (MRI) offers improved soft-tissue visualization, allowing for better tumor and normal tissue delineation. MR-guided RT (MRgRT) has traditionally been defined by the use of offline MRI to aid in defining the RT volumes during the initial planning stages in order to ensure accurate tumor targeting while sparing critical normal tissues. However, the ViewRay MRIdian and Elekta Unity have improved upon and revolutionized the MRgRT by creating a combined MRI and linear accelerator (MRL), allowing MRgRT to incorporate online MRI in RT. MRL-based MR-guided SBRT (MRgSBRT) represents a novel solution to deliver higher doses to larger volumes of gross disease, regardless of the proximity of at-risk organs due to the (1) superior soft-tissue visualization for patient positioning, (2) real-time continuous intrafraction assessment of internal structures, and (3) daily online adaptive replanning. Stereotactic MR-guided adaptive radiation therapy (SMART) has enabled the safe delivery of ablative doses to tumors adjacent to radiosensitive tissues throughout the body. Although it is still a relatively new RT technique, SMART has demonstrated significant opportunities to improve disease control and reduce toxicity. In this review, we included the current clinical applications and the active prospective trials related to SMART. We highlighted the most impactful clinical studies at various tumor sites. In addition, we explored how MRL-based multiparametric MRI could potentially synergize with SMART to significantly change the current treatment paradigm and to improve personalized cancer care.

摘要

立体定向体部放疗(SBRT)是一种有效的放射治疗技术,与传统剂量的放射治疗相比,它允许更短的治疗疗程。顾名思义,SBRT依靠每日图像引导来确保每次分割照射的是肿瘤,而非健康组织。磁共振成像(MRI)能改善软组织可视化,从而更好地勾勒肿瘤和正常组织。传统上,磁共振引导放疗(MRgRT)是通过在初始计划阶段使用离线MRI来辅助定义放疗体积,以确保准确靶向肿瘤同时 sparing关键正常组织。然而,ViewRay MRIdian和医科达Unity通过创建组合的MRI和直线加速器(MRL)对MRgRT进行了改进并使其发生了变革,使得MRgRT能够在放疗中纳入在线MRI。基于MRL的磁共振引导SBRT(MRgSBRT)代表了一种新的解决方案,可将更高剂量输送至更大体积的大体疾病,无论危险器官的 proximity如何,这得益于(1)用于患者定位的 superior软组织可视化,(2)对内部结构的实时连续分次内评估,以及(3)每日在线自适应重新计划。立体定向磁共振引导自适应放疗(SMART)已能够安全地将消融剂量输送至全身与放射敏感组织相邻的肿瘤。尽管它仍是一种相对较新的放疗技术,但SMART已展现出改善疾病控制和降低毒性的重大机会。在本综述中,我们纳入了与SMART相关的当前临床应用和正在进行的前瞻性试验。我们突出了在各个肿瘤部位最具影响力的临床研究。此外,我们探讨了基于MRL的多参数MRI如何可能与SMART协同作用,以显著改变当前的治疗模式并改善个性化癌症护理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9bb/10093051/042ecf50dae7/cancers-15-02081-g001.jpg

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