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Commissioning and performance evaluation of RadCalc for the Elekta unity MRI‐linac

机译:用于Elekta统一MRI-直线加速器的RadCalc的调试和性能评估

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Recent availability of MRI‐guided linear accelerators has introduced a number of clinical challenges, particularly in the context of online plan adaptation. Paramount among these is verification of plan quality prior to patient treatment. Currently, there are no commercial products available for monitor unit verification that fully support the newly FDA cleared Elekta Unity 1.5?T MRI‐linac. In this work, we investigate the accuracy and precision of RadCalc for this purpose, which is a software package that uses a Clarkson integration algorithm for point dose calculation. To this end, 18 IMRT patient plans (186 individual beams) were created and used for RadCalc point dose calculations. In comparison with the primary treatment planning system (Monaco), mean point dose deviations of 0.0?±?1.0% (n?=?18) and 1.7?±?12.4% (n?=?186) were obtained on a per‐plan and per‐beam basis, respectively. The dose plane comparison functionality within RadCalc was found to be highly inaccurate, however, modest improvements could be made by artificially shifting jaws and multi leaf collimator positions to account for the dosimetric shift due to the magnetic field (67.3% vs 96.5% mean 5%/5?mm gamma pass rate).
机译:MRI引导的线性加速器的最新可用性带来了许多临床挑战,特别是在在线计划调整的背景下。其中最重要的是在患者治疗之前验证计划质量。当前,尚无可用于监视单元验证的商业产品完全支持新近被FDA批准的Elekta Unity 1.5?T MRI-linac。在这项工作中,我们为此目的研究了RadCalc的准确性和精确度,它是一个使用Clarkson积分算法进行点剂量计算的软件包。为此,创建了18个IMRT患者计划(186个单独的光束)并将其用于RadCalc点剂量计算。与初级治疗计划系统(Monaco)相比,平均点剂量偏差为0.0?±?1.0%(n?=?18)和1.7?±?12.4%(n?=?186)。计划和每个光束。发现RadCalc中的剂量平面比较功能非常不准确,但是,可以通过人工移动钳口和多叶准直仪的位置来弥补由于磁场引起的剂量学偏移,从而可以进行适度的改进(67.3%对96.5%的平均值为5% / 5?mm伽玛通过率)。

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