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磁共振直线加速器技术进步的历程:图像引导放射治疗的未来

History of Technological Advancements towards MR-Linac: The Future of Image-Guided Radiotherapy.

作者信息

Rammohan Nikhil, Randall James W, Yadav Poonam

机构信息

Department of Radiation Oncology, Northwestern Medicine, Chicago, IL 60611, USA.

出版信息

J Clin Med. 2022 Aug 12;11(16):4730. doi: 10.3390/jcm11164730.

Abstract

Image-guided radiotherapy (IGRT) enables optimal tumor targeting and sparing of organs-at-risk, which ultimately results in improved outcomes for patients. Magnetic resonance imaging (MRI) revolutionized diagnostic imaging with its superior soft tissue contrast, high spatiotemporal resolution, and freedom from ionizing radiation exposure. Over the past few years there has been burgeoning interest in MR-guided radiotherapy (MRgRT) to overcome current challenges in X-ray-based IGRT, including but not limited to, suboptimal soft tissue contrast, lack of efficient daily adaptation, and incremental exposure to ionizing radiation. In this review, we present an overview of the technologic advancements in IGRT that led to MRI-linear accelerator (MRL) integration. Our report is organized in three parts: (1) a historical timeline tracing the origins of radiotherapy and evolution of IGRT, (2) currently available MRL technology, and (3) future directions and aspirations for MRL applications.

摘要

图像引导放射治疗(IGRT)能够实现肿瘤的精准靶向以及对危及器官的保护,最终改善患者的治疗效果。磁共振成像(MRI)凭借其卓越的软组织对比度、高时空分辨率以及无电离辐射暴露等优势,彻底变革了诊断成像技术。在过去几年中,人们对磁共振引导放射治疗(MRgRT)的兴趣与日俱增,旨在克服基于X射线的IGRT当前面临的挑战,包括但不限于软组织对比度欠佳、缺乏有效的每日适应性调整以及电离辐射暴露增加等问题。在本综述中,我们概述了促成MRI直线加速器(MRL)整合的IGRT技术进展。我们的报告分为三个部分:(1)追溯放射治疗起源和IGRT演变的历史时间表;(2)当前可用的MRL技术;(3)MRL应用的未来方向与展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99fd/9409689/b38809a863bb/jcm-11-04730-g001.jpg

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