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Measurement of changes in linear accelerator photon energy through flatness variation using an ion chamber array

机译:使用离子室阵列通过平坦度变化测量线性加速器光子能量的变化

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摘要

Purpose: To compare the use of flatness versus percent depth dose (PDD) for determining changes in photon beam energy for a megavoltage linear accelerator. Methods: Energy changes were accomplished by adjusting the bending magnet current by up to ±15% in 5% increments away from the value used clinically. Two metrics for flatness, relative flatness in the central 80% of the field (Flat) and average maximum dose along the diagonals normalized by central axis dose (Fdn)> were measured using a commercially available planner ionization chamber array. PDD was measured in water at depths of 5 and 10 cm in 3 x 3 cm2 and 10 x 10 cm2 fields using a cylindrical chamber. Results: PDD was more sensitive to changes in energy when the beam energy was increased than when it was decreased. For the 18-MV beam in particular, PDD was not sensitive to energy reductions below the nominal energy. The value of Flat was found to be more sensitive to decreases in energy than to increases, with little sensitivity to energy increases above the nominal energy for 18-MV beams. Fdn was the only metric that was found to be sensitive to both increases and reductions of energy for both the 6- and 18-MV beams. Conclusions: Flatness based metrics were found to be more sensitive to energy changes than PDD, In particular, Fdn was found to be the most sensitive metric to energy changes for photon beams of 6 and 18 MV. The ionization chamber array allows this metric to be conveniently measured as part of routine accelerator quality assurance.
机译:目的:比较平坦度与深度剂量百分比(PDD)在确定兆电压线性加速器的光子束能量变化中的使用。方法:通过将弯曲磁体电流调整为距临床使用值最多5%的±15%来实现能量变化。使用可商购的平面电离室阵列,测量平坦度的两个度量,场中心80%的相对平坦度(Flat)和沿对角线的平均最大剂量(通过中心轴剂量归一化(Fdn)>)。使用圆柱室在3 x 3 cm2和10 x 10 cm2的田野中于5和10 cm深度的水中测量PDD。结果:当光束能量增加时,PDD对能量的变化比对能量减少时更敏感。特别是对于18-MV光束,PDD对低于标称能量的能量降低不敏感。发现Flat的值对能量的减少比对能量的增加更敏感,而对于18-MV光束高于标称能量的能量增加几乎没有敏感性。 Fdn是唯一对6和18 MV光束的能量增加和减少均敏感的度量标准。结论:发现基于平面度的度量比PDD对能量变化更敏感,特别是对于6和18 MV的光子束,Fdn被发现对能量变化最敏感。电离室阵列可方便地测量此度量标准,作为常规加速器质量保证的一部分。

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