Paul Scherrer Institute, ETH Domain, Switzerland; Department of Oncology, Rigshospitalet Copenhagen University Hospital, Denmark; Niels Bohr Institute, University of Copenhagen, Denmark.
Paul Scherrer Institute, ETH Domain, Switzerland; Department of Physics, ETH Zürich, Switzerland.
Radiother Oncol. 2019 May;134:135-142. doi: 10.1016/j.radonc.2019.01.033. Epub 2019 Feb 14.
Motion management in the treatment of lung cancer is necessary to assure highest quality of the delivered radiation therapy. In this study, the breath-hold technique is experimentally investigated for pencil beam scanned (PBS) proton therapy, with respect to the dosimetric effect of residual breath-hold motion.
Three-dimensional (3D)-printed tumours extracted from CT scans of three patients were inserted into a dynamic anthropomorphic breathing phantom. The target was set up to move with the individual patient's tumour motion during breath-hold as previously assessed on fluoroscopy. Target dose was measured with radio-chromic film, and both single field uniform dose (SFUD) and intensity-modulated proton therapy (IMPT) plans were delivered. Experiments were repeated for each patient without any motion, to compute the relative dose deviation between static and breath-hold cases.
SFUD plans showed small dose deviations between static and breath-hold cases, as evidenced by the gamma pass rate (3%, 3 mm) of 85% or higher. Dose deviation was more evident for IMPT plans, with gamma pass rate reduced to 50-70%.
The breath-hold technique is robust to residual intra-breath-hold motion for SFUD treatment plans, based on our experimental study. IMPT was less robust with larger detected dose deviations.
为了确保放射治疗的高质量,肺癌治疗中的运动管理是必要的。在这项研究中,针对残余屏气运动的剂量学效应,对笔形束扫描(PBS)质子治疗中的屏气技术进行了实验研究。
从三位患者的 CT 扫描中提取的三维(3D)打印肿瘤被插入到动态拟人呼吸体模中。靶区设置为在屏气期间随个体患者肿瘤运动而移动,如透视检查所评估的那样。使用放射色迹胶片测量靶区剂量,分别给出了单野均匀剂量(SFUD)和强度调制质子治疗(IMPT)计划。对于每位患者,我们都进行了无任何运动的重复实验,以计算静态和屏气情况下的相对剂量偏差。
SFUD 计划在静态和屏气情况下的剂量偏差较小,伽马通过率(3%,3mm)达到 85%或更高。对于 IMPT 计划,剂量偏差更为明显,伽马通过率降至 50-70%。
根据我们的实验研究,SFUD 治疗计划的屏气技术对残余屏气内运动具有鲁棒性。IMPT 的检测到的剂量偏差较大,因此稳健性较差。