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Development of a QA phantom and automated analysis tool for geometric quality assurance of on-board MV and kV x-ray imaging systems

机译:开发QA体模和自动分析工具以确保车载MV和kV X射线成像系统的几何质量

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摘要

The medical linear accelerator (linac) integrated with a kilovoltage (kV) flat-panel imager has been emerging as an important piece of equipment for image-guided radiation therapy. Due to the sagging of the linac head and the flexing of the robotic arms that mount the x-ray tube and flat-panel detector, geometric nonidealities generally exist in the imaging geometry no matter whether it is for the two-dimensional projection image or three-dimensional cone-beam computed tomography. Normally, the geometric parameters are established during the commissioning and incorporated in correction software in respective image formation or reconstruction. A prudent use of an on-board imaging system necessitates a routine surveillance of the geometric accuracy of the system like the position of the x-ray source, imager position and orientation, isocenter, rotation trajectory, and source-to-imager distance. Here we describe a purposely built phantom and a data analysis software for monitoring these important parameters of the system in an efficient and automated way. The developed tool works equally well for the megavoltage (MV) electronic portal imaging device and hence allows us to measure the coincidence of the isocenters of the MV and kV beams of the linac. This QA tool can detect an angular uncertainty of 0.1° of the x-ray source. For spatial uncertainties, such as the source position, the imager position, or the kV∕MV isocenter misalignment, the demonstrated accuracy of this tool was better than 1.6 mm. The developed tool provides us with a simple, robust, and objective way to probe and monitor the geometric status of an imaging system in a fully automatic process and facilitate routine QA workflow in a clinic.
机译:集成了千伏(kV)平板成像仪的医用线性加速器(linac)已经成为图像引导放射治疗的重要设备。由于直线加速器头部的下垂以及安装X射线管和平板探测器的机械臂的弯曲,无论是用于二维投影图像还是用于三个三维投影图像,成像几何中通常都存在几何非理想性锥束计算机断层扫描。通常,几何参数是在调试期间确定的,并在相应的图像形成或重建过程中并入校正软件中。谨慎使用车载成像系统需要例行监视系统的几何精度,例如X射线源的位置,成像器的位置和方向,等角点,旋转轨迹以及源到成像器的距离。在这里,我们描述了一种专门构建的体模和数据分析软件,用于以有效和自动化的方式监视系统的这些重要参数。所开发的工具对于兆伏(MV)电子门禁成像设备同样有效,因此使我们能够测量直线加速器的MV和kV束的等角点重合。此QA工具可以检测到X射线源的角度不确定度为0.1°。对于空间不确定性(例如源位置,成像器位置或kV ∕ MV等角点未对准),该工具的证实精度优于1.6 mm。开发的工具为我们提供了一种简单,健壮和客观的方法,可以在全自动过程中探测和监视成像系统的几何状态,并简化诊所的常规QA工作流程。

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