AAPM Task Group 334: A guidance document to using radiotherapy immobilization devices and accessories in an MR environment

Author:

Hobson Maritza A.1,Hu Yanle2,Caldwell Barrett34,Cohen Gil'ad N.5,Glide‐Hurst Carri67,Huang Long8,Jackson Paul D.9,Jang Sunyoung10,Langner Ulrich11,Lee Hannah J.12,Levesque Ives R.1314,Narayanan Sreeram15,Park Justin C.16,Steffen John17,Wu Q. Jackie18,Zhou Yong19

Affiliation:

1. Department of Radiation Oncology Wake Forest University School of Medicine Winston‐Salem North Carolina USA

2. Department of Radiation Oncology Mayo Clinic Arizona Phoenix Arizona USA

3. School of Industrial Engineering Purdue University West Lafayette Indiana USA

4. School of Aeronautics and Astronautics Purdue University West Lafayette Indiana USA

5. Department of Medical Physics Memorial Sloan‐Kettering Cancer Center New York New York USA

6. Department of Human Oncology University of Wisconsin––Madison Madison Wisconsin USA

7. Department of Medical Physics University of Wisconsin––Madison Madison Wisconsin USA

8. Department of Radiation Oncology University of Utah Salt Lake City Utah USA

9. Department of Radiation Oncology Henry Ford Health System Detroit Michigan USA

10. Department of Radiation Oncology Penn State College of Medicine Hershey Pennsylvania USA

11. Department of Radiation Oncology Rhode Island Hospital Providence Rhode Island USA

12. Corewell Health William Beaumont University Hospital Royal Oak Michigan USA

13. Gerald Bronfman Department of Oncology and Medical Physics Unit McGill University Montreal QC Canada

14. Department of Medical Physics McGill University Health Centre Cedars Cancer Centre Montreal QC Canada

15. Department of Radiation Oncology Virginia Mason Cancer Institute Seattle Washington USA

16. Division of Medical Physics Department of Radiation Oncology Mayo Clinic Jacksonville Florida USA

17. CQ Medical Coralville Iowa USA

18. Department of Radiation Oncology Duke University Medical Center Durham North Carolina USA

19. Department of Radiology Services Corewell Health Grand Rapids Michigan USA

Abstract

AbstractUse 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.

Publisher

Wiley

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