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Validation of the Eclipse AAA algorithm at extended SSD

机译:在扩展SSD上验证Eclipse AAA算法

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摘要

The accuracy of dose calculations at extended SSD is of significant importance in the dosimetric planning of total body irradiation (TBI). In a first step toward the implementation of electronic, multi‐leaf collimator compensation for dose inhomogeneities and surface contour in TBI, we have evaluated the ability of the Eclipse AAA to accurately predict dose distributions in water at extended SSD. For this purpose, we use the Eclipse AAA algorithm, commissioned with machine‐specific beam data for a 6 MV photon beam, at standard SSD (100 cm). The model was then used for dose distribution calculations at extended SSD (179.5 cm). Two sets of measurements were acquired for a 6 MV beam (from a Varian linear accelerator) in a water tank at extended SSD: i) open beam for 5  ×  5, 10  ×  10, 20  ×  20 and 40 × 40 cm2 field sizes (defined at 179.5 cm SSD), and ii) identical field sizes but with a 1.3 cm thick acrylic spoiler placed 10 cm above the water surface. Dose profiles were acquired at 5 cm, 10 cm and 20 cm depths. Dose distributions for the two setups were calculated using the AAA algorithm in Eclipse. Confidence limits for comparisons between measured and calculated absolute depth dose curves and normalized dose profiles were determined as suggested by Venselaar et al. The confidence limits were within 2% and 2 mm for both setups. Extended SSD calculations were also performed using Eclipse AAA, commissioned with Varian Golden beam data at standard SSD. No significant difference between the custom commissioned and Golden Eclipse AAA was observed. In conclusion, Eclipse AAA commissioned at standard SSD can be used to accurately predict dose distributions in water at extended SSD for 6 MV open beams.PACS numbers: 87.53.Kn, 87.55.D‐, 87.55.de, 87.56.ng
机译:在扩展的SSD剂量计算的准确性在全身辐射剂量规划(TBI)中非常重要。在实现TBI中剂量不均匀性和表面轮廓的电子,多叶准直器补偿的第一步中,我们评估了Eclipse AAA在扩展SSD时准确预测水中剂量分布的能力。为此,我们使用Eclipse AAA算法,并以标准SSD(100 cm)的6 MV光子束的机器特定束数据进行调试。然后将该模型用于扩展SSD(179.5 cm)处的剂量分布计算。在扩展的SSD上的水箱中对6 MV光束(来自Varian线性加速器)进行了两组测量:i)5××5、10××10、20××20和40×40×cm的开放光束2 字段大小(定义为179.5厘米SSD),并且ii)相同的字段大小,但在水面上方10厘米处放置了1.3厘米厚的丙烯酸扰流板。在5厘米,10厘米和20厘米的深度获得剂量分布。使用Eclipse中的AAA算法计算两种设置的剂量分布。根据Venselaar等人的建议,确定测量和计算的绝对深度剂量曲线与标准化剂量曲线之间比较的置信极限。两种设置的置信限在2%和2 mm以内。还使用Eclipse AAA进行了扩展的SSD计算,并使用了标准SSD上的Varian Golden光束数据进行了调试。在定制委托和Golden Eclipse AAA之间没有观察到显着差异。总之,在标准SSD上调试的Eclipse AAA可用于准确预测扩展的SSD在水中的剂量分布,适用于6 MV敞开光束.PACS编号:87.53.Kn,87.55.D-,87.55.de,87.56.ng

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