首页> 外文期刊>Medical dosimetry: official journal of the American Association of Medical Dosimetrists >Correlation between detector array measurements and a computer algorithm for enhanced dynamic wedge profiles.
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Correlation between detector array measurements and a computer algorithm for enhanced dynamic wedge profiles.

机译:检测器阵列测量值与用于增强动态楔形轮廓的计算机算法之间的相关性。

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摘要

Verification of dosimetric data computed by a treatment planning system is necessary in the commissioning process for any clinical software, just as it is necessary for any annual quality assurance testing. Direct verification of the dosimetric data is achievable when calculating the enhanced dynamic wedge (EDW) off-axis ratio at each point of interest. As mathematical models for hand-calculating such factors are still evolving, measurement of these external beam arrangements has proven significantly more accurate. This research presents a correlation for measured and planned data, specific for 6- and 18-MV photon beams on a Varian 21EX linear accelerator, using the EDW mode. Field generation was created using the Varian Eclipse treatment planning system. On treatment field delivery, the Sun Nuclear MapCHECK diode array was used to plot each beam profile in 2 dimensions. Wedge angles of 10 degrees , 15 degrees , 20 degrees , 25 degrees , 30 degrees , 45 degrees and 60 degrees were studied here, under isocentric geometry, at a fixed water equivalent depth of 15 cm. Field size dependence was considered with each wedge and energy combination, where symmetric apertures of 5 x 5 cm(2), 10 x 10 cm(2), 15 x 15 cm(2) and 20 x 20 cm(2) were used. Accurate dosimetric results were found to be achievable when using this treatment planning system to within 2.8% maximum deviation, and to within 1% deviation averaged over all. The diode array also proved to be simple and ideally suited for EDW measurements.
机译:对于任何临床软件,在调试过程中都必须验证由治疗计划系统计算出的剂量数据,就像进行任何年度质量保证测试一样。在每个关注点计算增强的动态楔形(EDW)离轴比时,可以直接验证剂量数据。随着用于手动计算这些因素的数学模型仍在发展,这些外部光束布置的测量已被证明更为准确。这项研究使用EDW模式,针对Varian 21EX线性加速器上的6和18 MV光子束,提供了测量数据和计划数据的相关性。使用Varian Eclipse处理计划系统创建了字段生成。在进行治疗现场时,使用Sun Nuclear MapCHECK二极管阵列绘制二维的每个光束轮廓。在等心几何形状下,在15 cm的固定水当量深度下,研究了10度,15度,20度,25度,30度,45度和60度的楔角。考虑到每个楔形和能量组合的场大小依赖性,其中使用了5 x 5 cm(2),10 x 10 cm(2),15 x 15 cm(2)和20 x 20 cm(2)的对称孔。当使用该治疗计划系统时,发现准确的剂量学结果是可以实现的,最大偏差在2.8%以内,并且平均偏差在1%以内。二极管阵列也很简单,非常适合EDW测量。

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