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Combined kV and MV imaging for real-time tracking of implanted fiducial markers1

机译:kV和MV组合成像可实时跟踪植入的基准标记1

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摘要

In the presence of intrafraction organ motion, target localization uncertainty can greatly hamper the advantage of highly conformal dose techniques such as intensity modulated radiation therapy (IMRT). To minimize the adverse dosimetric effect caused by tumor motion, a real-time knowledge of the tumor position is required throughout the beam delivery process. The recent integration of onboard kV diagnostic imaging together with MV electronic portal imaging devices on linear accelerators can allow for real-time three-dimensional (3D) tumor position monitoring during a treatment delivery. The aim of this study is to demonstrate a near real-time 3D internal fiducial tracking system based on the combined use of kV and MV imaging. A commercially available radiotherapy system equipped with both kV and MV imaging systems was used in this work. A hardware video frame grabber was used to capture both kV and MV video streams simultaneously through independent video channels at 30 frames per second. The fiducial locations were extracted from the kV and MV images using a software tool. The geometric tracking capabilities of the system were evaluated using a pelvic phantom with embedded fiducials placed on a moveable stage. The maximum tracking speed of the kV∕MV system is approximately 9 Hz, which is primarily limited by the frame rate of the MV imager. The geometric accuracy of the system is found to be on the order of less than 1 mm in all three spatial dimensions. The technique requires minimal hardware modification and is potentially useful for image-guided radiation therapy systems.
机译:在存在分数内器官运动的情况下,靶标定位的不确定性会极大地妨碍高度共形剂量技术的优势,例如强度调制放射疗法(IMRT)。为了使由肿瘤运动引起的不利剂量效应最小化,在整个束传输过程中需要对肿瘤位置的实时了解。机载kV诊断成像与线性加速器上的MV电子门禁成像设备的最新集成可以在治疗过程中实现实时三维(3D)肿瘤位置监测。这项研究的目的是演示基于kV和MV成像结合使用的近实时3D内部基准跟踪系统。在这项工作中使用了同时装有kV和MV成像系统的市售放射治疗系统。硬件视频帧采集器用于以每秒30帧的速度通过独立的视频通道同时捕获kV和MV视频流。使用软件工具从kV和MV图像中提取基准位置。该系统的几何跟踪能力是使用带有可移动平台上的嵌入式基准的骨盆模型来评估的。 kV ∕ MV系统的最大跟踪速度约为9 Hz,这主要受MV成像器的帧速率限制。发现该系统的几何精度在所有三个空间维度上均小于1毫米。该技术需要最少的硬件修改,并且可能对图像引导放射治疗系统有用。

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