Institute for Molecular Bio-imaging and Physiology (IBFM), National Research Council (CNR), Segrate (Milano), Italy.
J Appl Clin Med Phys. 2012 Sep 6;13(5):3817. doi: 10.1120/jacmp.v13i5.3817.
One of the most relevant risks in breast intraoperative electron radiotherapy (IOERT) is the incorrect positioning of the shielding disc. If such a setup error occurs, the treatment zone could receive a nonuniform dose delivery, and a considerable part of the electron beam could hit - and irradiate - the patient's healthy tissue. However misalignment and tilt angle of the shielding disc can be evaluated, but it is not possible to measure the corresponding in vivo dose distribution. This led us to develop a simulation using the Geant4 Monte Carlo toolkit to study the effects of disc configuration on dose distribution. Some parameters were investigated: the shielding factor (SF), the radiation back scattering factor (BSF), the volume-dose histogram in the treatment zone, and the maximum leakage dose (MLD) in normal tissue. A lateral shift of the disc (in the plane perpendicular to the beam axis) causes a decrease in SF (from 4% for a misalignment of 5 mm to 40% for a misalignment of 40 mm), but no relevant dose variations were found for a tilt angle until 10°. In the same uncorrected disc positions, the BSF shows no significant change. MLD rises to 3.45 Gy for a 14 mm misalignment and 4.60 Gy for 30° tilt angle when the prescribed dose is 21 Gy. The simulation results are compared with the experimental ones, and allow an a posteriori estimation of the dose distribution in the breast target and underlying healthy tissue. This information could help the surgical team choose a more correct clinical setup, and assist in quantifying the degree of success or failure of an IOERT breast treatment.
乳腺术中电子放射治疗(IOERT)最相关的风险之一是屏蔽盘的位置不正确。如果发生这种设置错误,治疗区域可能会接收到不均匀的剂量分布,并且电子束的相当一部分可能会击中并辐照患者的健康组织。虽然可以评估屏蔽盘的未对准和倾斜角度,但无法测量相应的体内剂量分布。这促使我们使用 Geant4 蒙特卡罗工具包开发了一种模拟,以研究屏蔽盘配置对剂量分布的影响。研究了一些参数:屏蔽因子(SF)、辐射反向散射因子(BSF)、治疗区域的体积剂量直方图以及正常组织中的最大泄漏剂量(MLD)。盘的横向移位(与射束轴垂直的平面内)会导致 SF 降低(从 5mm 未对准的 4%降至 40mm 未对准的 40%),但对于倾斜角直到 10°,没有发现相关剂量变化。在相同的未校正盘位置,BSF 没有明显变化。当规定剂量为 21Gy 时,14mm 未对准和 30°倾斜角会导致 MLD 上升至 3.45Gy 和 4.60Gy。模拟结果与实验结果进行了比较,并允许对乳房靶区和下方健康组织中的剂量分布进行后验估计。这些信息可以帮助手术团队选择更正确的临床设置,并有助于量化 IOERT 乳房治疗的成功或失败程度。