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Three dimensional dose verification of VMAT plans using the Octavius 4D dosimetric system

机译:使用Octavius 4D剂量系统对VMAT计划进行三维剂量验证

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摘要

The Octavius 4D dosimetric system generates a 3D dose matrix based on a measured planar dose and user supplied Percentage Depth Dose (PDD) data. The accuracy of 3D dose matrices reconstructed by the Octavius 4D dosimetric system was systematically studied for an open static field, an open arc field and clinical VMAT plans. The Octavius reconstructed 3D dose matrices were compared with the Treatment Planning System (TPS) calculated 3D dose matrices using 3D gamma (gamma) analysis with 2%/2mm and 3%/3mm tolerance criteria. The larger detector size in the 2D detector array of the Octavius system resulted in failed voxels in the high dose gradient regions. For the open arc fields mean (1 sigma) gamma pass rates of 84.5(8.9) % and 94.2(4.5) % were observed with 2%/2mm and 3%/3mm tolerance criteria respectively and for clinical VMAT plans mean (1 sigma) gamma pass rates of 86.8(3.5) % and 96.7(1.4) % were observed.
机译:Octavius 4D剂量系统基于测量的平面剂量和用户提供的百分比深度剂量(PDD)数据生成3D剂量矩阵。针对开放静态场,开放弧场和临床VMAT计划,系统地研究了由Octavius 4D剂量系统重建的3D剂量矩阵的准确性。使用2D / 2mm和3%/ 3mm公差标准的3D伽马(γ)分析,将Octavius重建的3D剂量矩阵与治疗计划系统(TPS)计算的3D剂量矩阵进行比较。 Octavius系统的2D检测器阵列中较大的检测器尺寸导致高剂量梯度区域中的体素失效。对于开放弧场,在2%/ 2mm和3%/ 3mm的公差标准下,分别观察到84.5(8.9)%和94.2(4.5)%的平均(1 sigma)伽玛通过率,对于临床VMAT计划,平均(1 sigma)伽玛通过率分别为86.8(3.5)%和96.7(1.4)%。

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