Performance of different Strength of Aperture Shape Controller on VMAT technique for Head and Neck, Pelvis, and Breast Cancer using Halcyon Machine

Publish Year: 1403
نوع سند: مقاله ژورنالی
زبان: English
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JR_IJMP-21-3_005

تاریخ نمایه سازی: 27 مرداد 1403

Abstract:

Introduction: Before starting optimization using the Volumetric Modulated Arc Therapy (VMAT) technique, the choice of the convenient aperture shape controller can be one of the most important factors that affect the plan quality.Material and Methods: Three different clinical cases were selected: head and neck cancer, pelvic cancer (prostate, cervix, and endometrium), and breast cancer treated with the VMAT technique. By keeping the same conditions, plans were reoptimized by varying aperture shape controllers (OFF, VERY LOW, LOW, MODERATE, HIGH, VERY HIGH). For plans evaluation, the homogeneity index (HI), conformity index (CI), target coverage (D۹۸% and V۹۸%), dose max (DMAX) and near max (D۲%), treatment time delivery (MUs), and gamma index passing rate were analyzed.Results: All the studied localizations treated with the VMAT technique met clinical objectives. The VERY LOW technique achieved the best dose conformity for all localizations. A slight improvement in terms of PTV coverage and max dose is obtained in a VERY LOW technique for pelvic cancer. For breast cancer, almost the same results were obtained. However, for head and neck treatments, better results were observed with the HIGH and VERY HIGH techniques, where coverage and maximum dose improved by up to ۶%.Conclusion: Changing the Strength of Aperture Shape Controller in VMAT optimization can affect dose calculation, especially in concave volumes such as Head and Neck.

Authors

Morad Erraoudi

Faculty of Sciences, LPHE-M&S, Mohammed V University, Rabat, Morocco

Youssef Bouzekraoui

Hassan First University of Settat, High Institute of Health Sciences, Laboratory of Sciences and Health Technologies, Settat, Morocco

Mohammed Yassine Herrassi

Private Hospital Casablanca-AKDITAL, Morocco

Khalid Elouardi

Department of physics, University of Mohammed ۱st, Oujda, Morocco

Yassir Raoui

Faculty of Sciences, LPHE-M&S, Mohammed V University, Rabat, Morocco

Mohamed El ghalmi

Faculty of Sciences, LPHE-M&S, Mohammed V University, Rabat, Morocco

FARIDA BENTAYEB

Departement of Physics, Laboratory of High Energy Physics, Modelling and Simulation, Faculty of Science, Mohammed V Agdal University, Rabat, Kingdom of Morocco

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