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4D cone beam CT phase sorting using high frequency opticalsurface measurement during image guided radiotherapy

机译:在图像引导放射治疗期间使用高频光学表面测量的4D锥梁CT相分类

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In image guided radiotherapy (IGRT) two of the most promising recent developments are four dimensional cone beam CT (4D CBCT) and dynamic optical metrology of patient surfaces. 4D CBCT is now becoming commercially available and finds use in treatment planning and verification, and whilst optical monitoring is a young technology, its ability to measure during treatment delivery without dose consequences has led to its uptake in many institutes. In this paper, we demonstrate the use of dynamic patient surfaces, simultaneously captured during CBCT acquisition using an optical sensor, to phase sort projection images for 4D CBCT volume reconstruction. The dual modality approach we describe means that in addition to 4D volumetric data, the system provides correlated wide field measurements of the patient's skin surface with high spatial and temporal resolution. As well as the value of such complementary data in verification and motion analysis studies, it introduces flexibility into the acquisition of the signal required for phase sorting. The specific technique used may be varied according to individual patient circumstances and the imaging target. We give details of three different methods of obtaining a suitable signal from the optical surfaces: simply following the motion of triangulation spots used to calibrate the surfaces' absolute height; monitoring the surface height in a single, arbitrarily selected, camera pixel; and tracking, in three dimensions, the movement of a surface feature. In addition to describing the system and methodology, we present initial results from a case study oesophageal cancer patient.
机译:在图像引导放射治疗(IGRT)中最近的两个最近的发展是四维锥形光束CT(4D CBCT)和患者表面的动态光学计量。 4D CBCT现已成为可商购的,并在治疗规划和验证中发现使用,而光学监测是一种年轻技术,其在没有剂量后果的治疗过程中测量的能力导致了许多研究所的摄取。在本文中,我们展示了使用光学传感器在CBCT采集期间同时捕获动态患者表面的使用,以进行4D CBCT卷重建的相位排序投影图像。我们描述的双模态方法意味着除了4D体积数据之外,该系统还提供具有高空间和时间分辨率的患者皮肤表面的相关宽场测量。除了验证和运动分析研究中,这种互补数据的价值,它引入了采集了相分类所需的信号的灵活性。所用的具体技术可以根据个体患者的情况和成像靶来改变。我们提供从光学表面获得合适信号的三种不同方法的细节:简单地跟随三角斑点的运动,用于校准表面的绝对高度;在单个任意选择的相机像素中监视表面高度;并跟踪三维,表面特征的移动。除了描述系统和方法外,我们还提出了案例研究食水癌症患者的初始结果。

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