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A novel dynamic robotic moving phantom system for patient‐specific quality assurance in real‐time tumor‐tracking radiotherapy

机译:一种新型动态机器人移动幻像系统,用于实时肿瘤跟踪放射治疗中的特定患者质量保证

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In this study, we assess a developed novel dynamic moving phantom system that can reproduce patient three‐dimensional (3D) tumor motion and patient anatomy, and perform patient‐specific quality assurance (QA) of respiratory‐gated radiotherapy using SyncTraX. Three patients with lung cancer were enrolled in a study. 3D printing technology was adopted to obtain individualized lung phantoms using CT images. A water‐equivalent phantom (WEP) with the 3D‐printed plate lung phantom was set at the tip of the robotic arm. The log file that recorded the 3D positions of the lung tumor was used as the input to the dynamic robotic moving phantom. The WEP was driven to track 3D respiratory motion. Respiratory‐gated radiotherapy was performed for driving the WEP. The tracking accuracy was calculated as the differences between the actual and measured positions. For the absolute dose and dose distribution, the differences between the planned and measured doses were calculated. The differences between the planned and measured absolute doses were 1.0% at the isocenter and 4.0% for the lung region. The gamma pass ratios of γsub3?mm/3%/sub and γsub2?mm/2%/sub under the conditions of gating and no‐gating were 99.9?±?0.1% and 90.1?±?8.5%, and 97.5?±?0.9% and 68.6?±?17.8%, respectively, for all the patients. Furthermore, for all the patients, the mean?±?SD of the root mean square values of the positional error were 0.11?±?0.04?mm, 0.33?±?0.04?mm, and 0.20?±?0.04?mm in the LR, AP, and SI directions, respectively. Finally, we showed that patient‐specific QA of respiratory‐gated radiotherapy using SyncTraX can be performed under realistic conditions using the moving phantom.
机译:在这项研究中,我们评估了一种开发的新型动态移动幻影系统,可以使用Synctrax再现患者三维(3D)肿瘤运动和患者解剖学,并进行患者特异性质量保证(QA)。三名肺癌患者注册了一项研究。采用3D打印技术使用CT图像获得个体化肺幻像。使用3D印刷板肺模体的水当量幻像(WEP)设置在机器人臂的尖端。将记录肺肿瘤的3D位置的日志文件用作动态机器人移动模型的输入。 WEP被驱动以跟踪3D呼吸运动。进行呼吸门的放射疗法用于驱动WEP。跟踪精度计算为实际和测量位置之间的差异。对于绝对剂量和剂量分布,计算了计划和测量剂量之间的差异。在IsOcenter的型和测量的绝对剂量之间的差异为<1.0%,肺区的<4.0%。 γ 3?mm / 3%和γ 2×mm / 2%/分>在门控和无门的条件下的γ通差是99.9?±0.1%和90.1?±8.5%和97.5?±0.9%和68.6?±17.8%,适用于所有患者。此外,对于所有患者,位置误差的均方根值的平均值θ±±sd为0.11Ω·η≤0.04Ω·mm,0.33?±0.04?mm,0.20?±0.04?mm LR,AP和SI方向分别。最后,我们表明使用Synctrax的呼吸门放射疗法的患者特异性QA可以在使用移动模型的现实条件下进行。

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