Radiation and Proton Therapy Center, Shizuoka Cancer Center, 1007 Shimonagakubo, Nagaizumi-cho, Shizuoka, 411-8777, Japan.
Department of Diagnostic Radiology, Shizuoka Cancer Center, 1007 Shimonagakubo, Nagaizumi-cho, Shizuoka, 411-8777, Japan.
Radiol Phys Technol. 2020 Jun;13(2):201-209. doi: 10.1007/s12194-020-00561-8. Epub 2020 Mar 13.
In this study, we propose a novel wedged field using a half-field flattening filter-free beam without a metallic filter or a moving jaw, and investigate the characteristics of the proposed technique. Dose distributions of the proposed method were first determined in virtual-water or anthropomorphic phantom using a radiotherapy planning system. We evaluated the wedge angle as a function of the field size, collimator rotation, and depth. The wedge angle at 10 MV was observed to be greater than that at 6 MV. The minimum angles at 6 and 10 MV were 17.7° and 40.4°, respectively, while the maximum angles were 33.9° and 48.4°, respectively. We determined that the wedge angle depended on the nominal beam energy and field size, and we verified that the proposed method is capable of delivering a gradient dose distribution and reducing treatment time.
在这项研究中,我们提出了一种新颖的楔形射野,使用半野平坦化滤波束,无需金属滤过板或移动叶片,并研究了该技术的特点。首先,我们使用放射治疗计划系统在虚拟水模或人体模型中确定了该方法的剂量分布。我们评估了楔形角作为射野大小、准直器旋转和深度的函数。在 10 MV 时,楔形角大于 6 MV。在 6 和 10 MV 时,最小角度分别为 17.7°和 40.4°,最大角度分别为 33.9°和 48.4°。我们确定楔形角取决于标称射线能量和射野大小,并验证了该方法能够提供梯度剂量分布并减少治疗时间。