Risk analysis of the Unity 1.5 T MR-Linac adapt-to-position workflow

被引:6
作者
Liang, Jiayi [1 ]
Scripes, Paola Godoy [1 ]
Tyagi, Neelam [1 ]
Subashi, Ergys [1 ]
Wunner, Theresa [2 ]
Cote, Nicolas [1 ]
Chan, Ching-Yun [1 ]
Ng, Angela [1 ]
Brennan, Victoria [2 ]
Zakeri, Kaveh [2 ]
Wildberger, Cassandra [2 ]
Mechalakos, James [1 ]
机构
[1] Mem Sloan Kettering Canc Ctr, Dept Med Phys, New York, NY 10065 USA
[2] Mem Sloan Kettering Canc Ctr, Dept Radiat Oncol, New York, NY USA
关键词
adapt to position; ATP; failure modes and effects analysis; FMEA; MR-guided radiation therapy; MR-Linac; IMPLEMENTATION; RADIOTHERAPY;
D O I
10.1002/acm2.13850
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Background and PurposeNewer technologies allow for daily treatment adaptation, providing the ability to account for setup variations and organ motion but comes at the cost of increasing the treatment workflow complexity. One such technology is the adapt-to-position (ATP) workflow on the Unity MR-Linac. Prospective risk assessment of a new workflow allows clinics to catch errors before they occur, especially for processes that include novel and unfamiliar steps. MethodsAs part of a quality management program, failure modes and effects analysis was performed on the ATP treatment workflow following the recommendations of AAPM's Task Group 100. A multidisciplinary team was formed to identify and evaluate failure modes for all the steps taken during a daily treatment workflow. Failure modes of high severity and overall score were isolated and addressed. ResultsMitigations were determined for high-ranking failure modes and implemented into the clinic. High-ranking failure modes existed in all steps of the workflow. Failure modes were then rescored to evaluate the effectiveness of the mitigations. ConclusionFailure modes and effects analysis on the Unity MR-Linac highlighted areas in the ATP workflow that could be prone to failures and allowed our clinic to change the process to be more robust.
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页数:15
相关论文
共 15 条
[1]   An on-line replanning scheme for interfractional variations [J].
Ahunbay, Ergun E. ;
Peng, Cheng ;
Chen, Guang-Pei ;
Narayanan, Sreeram ;
Yu, Cedric ;
Lawton, Colleen ;
Li, X. Allen .
MEDICAL PHYSICS, 2008, 35 (08) :3607-3615
[2]   A practical implementation of physics quality assurance for photon adaptive radiotherapy [J].
Cai, Bin ;
Green, Olga L. ;
Kashani, Rojano ;
Rodriguez, Vivian L. ;
Mutic, Sasa ;
Yang, Deshan .
ZEITSCHRIFT FUR MEDIZINISCHE PHYSIK, 2018, 28 (03) :211-223
[3]  
de los Santos LEF, 2015, J APPL CLIN MED PHYS, V16, P37, DOI 10.1120/jacmp.v16i3.5431
[4]  
Elekta Ltd, 2021, UN TREATM SESS INT
[5]   ACR guidance document on MR safe practices: Updates and critical information 2019 [J].
Greenberg, Todd D. ;
Hoff, Michael N. ;
Gilk, Tobias B. ;
Jackson, Edward F. ;
Kanal, Emanuel ;
McKinney, Alexander M. ;
Och, Joseph G. ;
Pedrosa, Ivan ;
Rampulla, Tina L. ;
Reeder, Scott B. ;
Rogg, Jeffrey M. ;
Shellock, Frank G. ;
Watson, Robert E. ;
Weinreb, Jeffrey C. ;
Hernandez, Dina .
JOURNAL OF MAGNETIC RESONANCE IMAGING, 2020, 51 (02) :331-338
[6]   Online adaptive radiotherapy for head and neck cancers on the MR linear Accelerator: Introducing a novel modified Adapt-to-Shape approach [J].
Gupta, Amit ;
Dunlop, Alex ;
Mitchell, Adam ;
McQuaid, Dualta ;
Nill, Simeon ;
Barnes, Helen ;
Newbold, Kate ;
Nutting, Chris ;
Bhide, Shreerang ;
Oelfke, Uwe ;
Harrington, Kevin Joseph ;
Wong, Kee Howe .
CLINICAL AND TRANSLATIONAL RADIATION ONCOLOGY, 2022, 32 :48-51
[7]   The report of Task Group 100 of the AAPM: Application of risk analysis methods to radiation therapy quality management [J].
Huq, M. Saiful ;
Fraass, Benedick A. ;
Dunscombe, Peter B. ;
Gibbons, John P., Jr. ;
Ibbott, Geoffrey S. ;
Mundt, Arno J. ;
Mutic, Sasa ;
Palta, Jatinder R. ;
Rath, Frank ;
Thomadsen, Bruce R. ;
Williamson, Jeffrey F. ;
Yorke, Ellen D. .
MEDICAL PHYSICS, 2016, 43 (07) :4209-4262
[8]   A practical implementation of risk management for the clinical introduction of online adaptive Magnetic Resonance-guided radiotherapy [J].
Klueter, Sebastian ;
Schrenk, Oliver ;
Renkamp, Claudia Katharina ;
Gliessmann, Stefan ;
Kress, Melanie ;
Debus, Juergen ;
Hoerner-Rieber, Juliane .
PHYSICS & IMAGING IN RADIATION ONCOLOGY, 2021, 17 :53-57
[9]  
mpec.aapm, ONLINE REPOSITORY TG
[10]   Operating procedures, risk management and challenges during implementation of adaptive and non-adaptive MR-guided radiotherapy: 1-year single-center experience [J].
Schueler, Helena Isabel Garcia ;
Pavic, Matea ;
Mayinger, Michael ;
Weitkamp, Nienke ;
Chamberlain, Madalyne ;
Reiner, Cacilia ;
Linsenmeier, Claudia ;
Balermpas, Panagiotis ;
Krayenbuehl, Jerome ;
Guckenberger, Matthias ;
Baumgartl, Michael ;
Wilke, Lotte ;
Tanadini-Lang, Stephanie ;
Andratschke, Nicolaus .
RADIATION ONCOLOGY, 2021, 16 (01)