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Going the distance: validation of Acuros and AAA at an extended SSD of 400 cm

机译:走近一步:在400厘米扩展固态硬盘上验证Acuros和AAA

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摘要

Accurate dose calculation and treatment delivery is essential for total body irradiation (TBI). In an effort to verify the accuracy of TBI dose calculation at our institution, we evaluated both the Varian Eclipse AAA and Acuros algorithms to predict dose distributions at an extended source‐to‐surface distance (SSD) of 400 cm. Measurements were compared to calculated values for a 6 MV beam in physical and virtual phantoms at 400 cm SSD using open beams for both 5 × 5 and 40 × 40 cm2 field sizes. Inline and crossline profiles were acquired at equivalent depths of 5 cm, 10 cm, and 20 cm. Depth‐dose curves were acquired using EBT2 film and an ion chamber for both field sizes. Finally, a RANDO phantom was used to simulate an actual TBI treatment. At this extended SSD, care must be taken using the planning system as there is good relative agreement between measured and calculated profiles for both algorithms, but there are deviations in terms of the absolute dose. Acuros has better agreement than AAA in the penumbra region.PACS number(s): 87.55.kd
机译:准确的剂量计算和治疗交付对于全身照射(TBI)至关重要。为了验证我们机构中TBI剂量计算的准确性,我们评估了Varian Eclipse AAA和Acuros算法,以预测400 cm扩展的源到地距离(SSD)的剂量分布。使用5×5和40×40 cm 2 视场大小的开放光束,将测量结果与在400 cm SSD上的物理和虚拟体模中6 MV光束的计算值进行比较。在线和交叉线轮廓是在5 cm,10 cm和20 cm的等效深度下获取的。两种剂量下的深度剂量曲线均使用EBT2膜和离子室获得。最后,使用RANDO体模来模拟实际的TBI处理。在此扩展的SSD上,必须谨慎使用计划系统,因为两种算法的实测曲线和计算曲线之间都具有良好的相对一致性,但是绝对剂量存在偏差。 Acuros在半影区的协定比AAA好.PACS编号:87.55.kd

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