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A Practical Method to Evaluate and Verify Dose Calculation Algorithms in the Treatment Planning System of Radiation Therapy

机译:放射治疗治疗计划系统中评估和验证剂量计算算法的实用方法

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Purpose: To introduce a practical method of using an Electron Density Phantom (EDP) to evaluate different dose calculation algorithms for photon beams in a treatment planning system (TPS) and to commission the Anisotropic Analytical Algorithm (AAA) with inhomogeneity correction in Varian Eclipse TPS. Methods and Materials: The same EDP with various tissue-equivalent plugs (water, lung exhale, lung inhale, liver, breast, muscle, adipose, dense bone, trabecular bone) used to calibrate the computed tomography (CT) simulator was adopted to evaluate different dose calculation algorithms in a TPS by measuring the actual dose delivered to the EDP. The treatment plans with a 6-Megavolt (MV) single field of 20 × 20, 10 × 10, and 4 × 4 cm2 field sizes were created based on the CT images of the EDP. A dose of 200 cGy was prescribed to the exhale-lung insert. Dose calculations were performed with AAA with inhomogeneity correction, Pencil Beam Convolution (PBC), and AAA without inhomogeneity correction. The plans were delivered and the actual doses were measured using radiation dosimetry devices MapCheck, EDR2-film, and ionization chamber respectively. Measured doses were compared with the calculated doses from the treatment plans. Results: The calculated dose using the AAA with inhomogeneity correction was most consistent with the measured dose. The dose discrepancy for all types of tissues covered by beam fields is at the level of 2%. The effect of AAA inhomogeneity correction for lung tissues is over 14%. Conclusions: The use of EDP and Map Check to evaluate and commission the dose calculation algorithms in a TPS is practical. In Varian Eclipse TPS, the AAA with inhomogeneity correction should be used for treatment planning especially when lung tissues are involved in a small radiation field.
机译:目的:介绍一种实用的方法,该方法使用电子密度模型(EDP)评估治疗计划系统(TPS)中光子束的不同剂量计算算法,并在Varian Eclipse TPS中调试具有不均匀性校正的各向异性分析算法(AAA) 。方法和材料:采用带有相同组织等效塞子(水,肺呼气,肺吸气,肝脏,乳房,肌肉,脂肪,密集骨,小梁骨)的相同EDP来校准计算机断层扫描(CT)模拟器。通过测量传递到EDP的实际剂量,在TPS中使用不同的剂量计算算法。根据EDP的CT图像,创建了6兆伏(MV)的20×20、10×10和4×4 cm2场大小的治疗计划。呼出肺插入物的剂量为200 cGy。剂量计算使用具有不均匀性校正的AAA,铅笔束卷积(PBC)和不具有不均匀性校正的AAA进行。交付了计划,并分别使用辐射剂量测定设备MapCheck,EDR2膜和电离室测量了实际剂量。将测得的剂量与根据治疗计划计算出的剂量进行比较。结果:使用具有不均匀性校正的AAA计算的剂量与测量的剂量最一致。光束场覆盖的所有类型组织的剂量差异为2%。 AAA不均匀性校正对肺组织的影响超过14%。结论:在TPS中使用EDP和Map Check评估和调试剂量计算算法是可行的。在Varian Eclipse TPS中,应使用具有不均匀性校正的AAA进行治疗计划,尤其是当肺组织涉及较小的辐射场时。

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