Department of Radiation Oncology, Wake Forest University School of Medicine, Winston-Salem, North Carolina, USA.
Department of Radiation Oncology, Mayo Clinic Arizona, Phoenix, Arizona, USA.
Med Phys. 2024 Jun;51(6):3822-3849. doi: 10.1002/mp.17061. Epub 2024 Apr 22.
Use of magnetic resonance (MR) imaging in radiation therapy has increased substantially in recent years as more radiotherapy centers are having MR simulators installed, requesting more time on clinical diagnostic MR systems, or even treating with combination MR linear accelerator (MR-linac) systems. With this increased use, to ensure the most accurate integration of images into radiotherapy (RT), RT immobilization devices and accessories must be able to be used safely in the MR environment and produce minimal perturbations. The determination of the safety profile and considerations often falls to the medical physicist or other support staff members who at a minimum should be a Level 2 personnel as per the ACR. The purpose of this guidance document will be to help guide the user in making determinations on MR Safety labeling (i.e., MR Safe, Conditional, or Unsafe) including standard testing, and verification of image quality, when using RT immobilization devices and accessories in an MR environment.
近年来,随着越来越多的放射治疗中心安装磁共振(MR)模拟器、请求在临床诊断 MR 系统上花费更多时间,甚至使用磁共振直线加速器(MR-linac)系统进行治疗,磁共振在放射治疗中的应用大大增加。随着这种应用的增加,为了确保将图像最准确地整合到放射治疗(RT)中,RT 固定装置和附件必须能够在 MR 环境中安全使用,并产生最小的干扰。安全概况的确定和考虑因素通常由医学物理学家或其他支持人员负责,根据 ACR 的规定,他们至少应是 2 级人员。本指南文件的目的将是帮助用户在 MR 环境中使用 RT 固定装置和附件时,确定磁共振安全标签(即磁共振安全、条件性安全或不安全),包括标准测试和图像质量验证。