Department of Radiation Oncology, University Clinic of Heidelberg, Heidelberg Ion Beam Therapy Center, Im Neuenheimer Feld 450, 69120 Heidelberg, Germany.
Phys Med Biol. 2010 Sep 7;55(17):5169-87. doi: 10.1088/0031-9155/55/17/018. Epub 2010 Aug 16.
Scanned ion beam delivery promises superior flexibility and accuracy for highly conformal tumour therapy in comparison to the usage of passive beam shaping systems. The attainable precision demands correct overlapping of the pencil-like beams which build up the entire dose distribution in the treatment field. In particular, improper dose application due to deviations of the lateral beam profiles from the nominal planning conditions must be prevented via appropriate beam monitoring in the beamline, prior to the entrance in the patient. To assess the necessary tolerance thresholds of the beam monitoring system at the Heidelberg Ion Beam Therapy Center, Germany, this study has investigated several worst-case scenarios for a sensitive treatment plan, namely scanned proton and carbon ion delivery to a small target volume at a shallow depth. Deviations from the nominal lateral beam profiles were simulated, which may occur because of misaligned elements or changes of the beam optic in the beamline. Data have been analysed with respect to the lateral penumbra, homogeneity and coverage of the dose deposition in the target volume. The results indicate that homogeneity is not seriously compromised by extremely narrow profiles for the standard planning choices of the lateral raster scan stepping and dose grid. Differently, broad beam distributions can significantly deteriorate the conformality of the dose delivery and too large increases (above approximately 150-200% of the nominal spotsize) must be prevented.
扫描离子束输送相较于使用被动束流成型系统,在高度适形肿瘤治疗方面具有更高的灵活性和准确性。为了实现治疗场中整个剂量分布的精确叠加,要求精确控制铅笔状射束的相互交叠。特别地,由于侧向束流轮廓偏离名义规划条件,可能会导致剂量应用不当,因此必须在进入患者体内之前,通过在束流路径中进行适当的束流监测来预防这种情况。为了评估德国海德堡离子束治疗中心的束流监测系统所需的容限阈值,本研究针对一个敏感治疗计划的几种最坏情况进行了调查,即对小靶区进行浅层扫描质子和碳离子治疗。模拟了侧向束流轮廓的偏离,这可能是由于束线中的元件未对准或束光学元件发生变化而导致的。对目标体积中剂量沉积的侧向半影、均匀性和覆盖率进行了数据分析。结果表明,对于标准规划选择的侧向光栅扫描步长和剂量栅格,非常窄的轮廓不会严重影响均匀性。相反,宽束分布会显著降低剂量输送的适形性,必须防止太大的增加(超过名义光斑尺寸的约 150-200%)。