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Evaluation of Methods of Displaying the Real-Time Scattered Radiation Distribution during Fluoroscopically-Guided Interventions for Staff Dose Reduction

机译:评估在荧光透视引导干预期间显示实时散射辐射分布的方法减少

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2D and 3D scatter dose display options are evaluated for usefulness and ease of interpretation for real-time feedback to staff to facilitate changes in individual positioning for dose reduction purposes, as well as improving staff consciousness of radiation presence. Room-sized scatter dose 3D matrices are obtained utilizing Monte Carlo simulations in EGSnrc. These distributions are superimposed on either a ceiling-view 2D graphic of the patient and table for reference or a 3D augmented reality (AR) display featuring a real-time video feed of the interventional room. A slice of the scatter dose matrix, at a selectable distance above the floor, is color-coded and superimposed on the computer graphic or AR display. The 3D display obtains depth information from a ceiling mounted Microsoft Kinect camera, which is equipped with a 1080p visual camera, as well as an IR emitter/receiver to generate a depth map of the interventional suite and persons within it. The 3D depth information allows parts of objects above the 2D dose map to pass through the map without being colorized by it so the height perspective of the dose map can be maintained. The 2D and 3D displays incorporate network information from the imaging system to scale the scatter dose with exposure factors and adjust rotation of the distribution to match the gantry. Demonstration images were displayed to neurosurgery interventional staff and survey responses were collected. Results from the survey indicated that scatter distribution displays would be desirable and helpful in managing staff dose.
机译:2D和3D散射剂量显示选项被评估用于有用性和易于解释对员工的实时反馈,以促进个人定位的变化,以提高辐射存在的员工意识。使用EGSNRC中的Monte Carlo Simulation获得室内散射剂量3D矩阵。这些分布在患者的天花板2D图形上叠加在患者和表的表格,用于参考或3D增强现实(AR)显示器,其具有介入室的实时视频馈送。在地板上方的可选距离处的散射剂量矩阵的一片散射剂量矩阵被彩色编码并叠加在计算机图形或AR显示器上。 3D显示器从天花板上安装的Microsoft Kinect相机获得深度信息,该摄像机配备了1080p视觉摄像头,以及IR发射器/接收器,以生成介入套件和其中的人员的深度图。 3D深度信息允许在2D剂量映射上方的物体部分以通过地图而不通过其着色,因此可以保持剂量图的高度透视图。 2D和3D显示从成像系统中包含网络信息,以将散射剂量与曝光因子缩放并调节分布的旋转以匹配龙门。演示图像显示为神经外科介入的介入工作人员,并收集调查响应。调查结果表明,散点分布显示将是可取的,有助于管理员工剂量。

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