Department of Radiology, University of Tokyo Hospital, 7-3-1 Hongo Bunkyo-ku, Tokyo 113-8655, Japan.
J Radiat Res. 2013 Jan;54(1):152-6. doi: 10.1093/jrr/rrs058. Epub 2012 Jul 22.
We propose a clinical workflow of stereotactic volumetric modulated arc therapy (VMAT) for a lung tumor from planning to tumor position verification using 4D planning computed tomography (CT) and 4D cone-beam CT (CBCT). A 4D CT scanner, an Anzai belt and a BodyFix were employed to obtain 10-phase respiratory-correlated CT data for a lung patient under constrained breathing conditions. A planning target volume (PTV) was defined by adding a 5-mm margin to an internal target volume created from 10 clinical target volumes, each of which was delineated on each of the 10-phase planning CT data. A single-arc VMAT plan was created with a D(95) prescription dose of 50 Gy in four fractions on the maximum exhalation phase CT images. The PTV contours were exported to a kilovoltage CBCT X-ray Volume Imaging (XVI) equipped with a linear accelerator (linac). Immediately before treatment, 10-phase 4D CBCT images were reconstructed leading to animated lung tumor imaging. Initial bone matching was performed between frame-averaged 4D planning CT and frame-averaged 4D CBCT datasets. Subsequently, the imported PTV contours and the animated moving tumor were simultaneously displayed on the XVI monitor, and a manual 4D registration was interactively performed on the monitor until the moving tumor was symmetrically positioned inside the PTV. A VMAT beam was delivered to the patient and during the delivery further 4D CBCT projection data were acquired to verify the tumor position. The entire process was repeated for each fraction. It was confirmed that the moving tumor was positioned inside the PTV during the VMAT delivery.
我们提出了一种使用 4D 计划 CT(CT)和 4D 锥形束 CT(CBCT)从规划到肿瘤位置验证的立体定向容积调强弧形治疗(VMAT)的临床工作流程,用于肺部肿瘤。为了在受限呼吸条件下对肺部患者进行 10 相位呼吸相关 CT 数据的获取,使用了 4D CT 扫描仪、Anzai 带和 BodyFix。通过将从 10 个临床靶区创建的内部靶区添加 5mm 边界来定义计划靶区(PTV),每个靶区都在每个 10 相位计划 CT 数据上进行了描绘。在最大呼气相 CT 图像上创建了一个单弧 VMAT 计划,处方剂量为 50Gy,分为四部分。将 PTV 轮廓导出到配备线性加速器(linac)的千伏 CBCT X 射线体积成像(XVI)。在治疗前立即重建 10 相位 4D CBCT 图像,从而实现动画肺部肿瘤成像。在 4D 计划 CT 和 4D CBCT 数据集的帧平均之间进行初始骨骼匹配。随后,将导入的 PTV 轮廓和动画移动肿瘤同时显示在 XVI 监视器上,并在监视器上交互式执行手动 4D 注册,直到移动肿瘤在 PTV 内对称定位。VMAT 光束被输送到患者,并且在输送期间进一步获取 4D CBCT 投影数据以验证肿瘤位置。对于每个部分,都会重复整个过程。在 VMAT 输送期间,移动肿瘤被确认为位于 PTV 内。