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Time‐resolved beam symmetry measurement for VMAT commissioning and quality assurance

机译:时间分辨的光束对称性测量用于VMAT调试和质量保证

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摘要

In volumetric‐modulated arc therapy (VMAT) treatment delivery perfect beam symmetry is assumed by the planning system. This study aims to test this assumption and present a method of measuring time‐resolved beam symmetry measurement during a VMAT delivery that includes extreme variations of dose rate and gantry speed. The Sun Nuclear IC Profiler in gantry mount was used to measure time‐resolved in‐plane and cross‐plane profiles during plan delivery from which symmetry could be determined. Time‐resolved symmetry measurements were performed throughout static field exposures at cardinal gantry angles, conformal arcs with constant dose rate and gantry speed, and during a VMAT test plan with gantry speed and dose rate modulation. Measurements were performed for both clockwise and counterclockwise gantry rotation and across four Varian 21iX linacs. The symmetry was found to be generally constant throughout the static field exposures to within 0.3% with an exception on one linac of up to 0.7%. Agreement in symmetry between cardinal angles was always within 1.0% and typically within 0.6%. During conformal arcs the results for clockwise and counterclockwise rotation were in agreement to within 0.3%. Both clockwise and counterclockwise tended to vary in similar manner by up to 0.5% during arc consistent with the cardinal gantry angle static field results. During the VMAT test plan the symmetry generally was in agreement with the conformal arc results. Greater variation in symmetry was observed in the low‐dose‐rate regions by up to 1.75%. All results were within clinically acceptable levels using the tolerances of NCS Report 24 (2015).PACS number(s): 87.55.Qr
机译:在容积调制弧光疗法(VMAT)中,计划系统假定完美的光束对称性。这项研究旨在检验这一假设,并提出一种在VMAT交付期间测量时间分辨光束对称性测量的方法,其中包括剂量率和龙门速度的极大变化。龙门架中的Sun Nuclear IC Profiler用于在计划交付期间测量时间分辨的面内和跨面轮廓,从中可以确定对称性。在主要的龙门角度,具有恒定剂量率和龙门速度的共形弧以及整个VMAT测试计划中,在具有龙门速度和剂量率调制的整个静态场中,进行时间分辨的对称性测量。对顺时针和逆时针龙门旋转以及横跨四个Varian 21iX直线加速器进行了测量。发现在整个静电场曝光中,对称性通常保持恒定,在0.3%以内,一个直线加速器的异常高达0.7%。基角之间的对称一致性始终在1.0%以内,通常在0.6%以内。在共形弧期间,顺时针和逆时针旋转的结果在0.3%以内。在圆弧期间,顺时针方向和逆时针方向都倾向于以类似的方式变化多达0.5%,这与主要龙门架角度静态磁场结果一致。在VMAT测试计划中,对称性通常与保形电弧结果一致。在低剂量率区域观察到最大的对称性差异,最高可达1.75%。使用NCS报告24(2015)的公差,所有结果均在临床可接受的水平内.PACS编号:87.55。

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