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Original Article

Korean Journal of Medical Physics 2012; 23(1): 33-41

Published online March 25, 2012

Copyright © Korean Society of Medical Physics.

Quality Assurance of Volumetric Modulated Arc Therapy for Elekta Synergy

Elekta Synergy 선형가속기를 이용한 입체적세기조절회전방사선치료(VMAT) 정도관리

Su Jung Shim*, Jang Bo Shim, Sang Hoon Lee, Chul Kee Min§, Kwang Hwan Cho§, Dong Oh Shin, Jin Ho Choi, Sung Ill Park#, Sam Ju Cho**

심수정*ㆍ심장보ㆍ이상훈ㆍ민철기§ㆍ조광환§ㆍ신동오ㆍ최진호ㆍ박성일#ㆍ조삼주**

*Department of Radiation Oncology, College of Medicine, Eulji University, Daejeon,Department of Radiation Oncology, College of Medicine, Korea University, Department of Radiation Oncology, Cheil General Hospital & Women's Healthcare Center, Kwandong University College of Medicine, Seoul,§Department of Radiation Oncology, Soonchunhyang University College of Medicine, Asan, Department of Radiation Oncology, College of Medicine, Kyung Hee University, Suwon,Department of Radiation Oncology, College of Medicine, Gachon University Gil Hospital, Incheon,#Department of Medical Physics, Graduate School of Science, Kyonggi University, Suwon,**Department of Radiological Science, College of Health Science, Eulji University, Seongnam, Korea

*을지대학교 의과대학 방사선종양학과, 고려대학교 의과대학 방사선종양학과, 관동대학교 의과대학 제일병원 방사선종양학과, §순천향대학교 의과대학 방사선종양학과, 경희대학교 의과대학 방사선종양학과, 가천대학교 길병원 방사선종양학과, #경기대학교 대학원 의학물리학과, **을지대학교 보건과학대학 방사선학과

Abstract

For applying the quality assurance (QA) of volumetric modulated arc therapy (VMAT) introduced in Eulji Hospital, we classify it into three different QA steps, treatment planning QA, pretreatment delivering QA, and treatment verifying QA. These steps are based on the existing intensity modulated radiation therapy (IMRT) QA that is currently used in our hospital. In each QA step, the evaluated items that are from QA program are configured and documented. In this study, QA program is not only applied to actual patient treatment, but also evaluated to establish a reference of clinical acceptance in pretreatment delivering QA. As a result, the confidence limits (CLs) in the measurements for the high-dose and low-dose regions are similar to the conventional IMRT level, and the clinical acceptance references in our hospital are determined to be 3 to 5% for the high-dose and the low-dose regions, respectively. Due to the characteristics of VMAT, evaluation of the intensity map was carried out using an ArcCheck device that was able to measure the intensity map in all directions, 360o. With a couple of dosimetric devices, the gamma index was evaluated and analyzed. The results were similar to the result of individual intensity maps in IMRT. Mapcheck, which is a 2-dimensional (2D) array device, was used to display the isodose distributions and gave very excellent local CL results. Thus, in our hospital, the acceptance references used in practical clinical application for the intensity maps of 360o directions and the coronal isodose distributions were determined to be 93% and 95%, respectively. To reduce arbitrary uncertainties and system errors, we had to evaluate the local CLs by using a phantom and to cooperate with multiple organizations to participate in this evaluation. In addition, we had to evaluate the local CLs by dividing them into different sections about the patient treatment points in practical clinics.

KeywordsTreatment verifying QA, IMRT, VMAT, Confidence limit, QA protocol

Korean Society of Medical Physics

Vol.35 No.3
September 2024

pISSN 2508-4445
eISSN 2508-4453
Formerly ISSN 1226-5829

Frequency: Quarterly

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