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Dose reduction by moving a region of interest (ROI) beam attenuator to follow a moving object of interest

机译:通过移动感兴趣的区域(ROI)光束衰减器来遵循感兴趣的移动对象来减少剂量

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摘要

Region-of-interest (ROI) fluoroscopy takes advantage of the fact that most neurovascular interventional activity is performed in only a small portion of an x-ray imaging field of view (FOV). The ROI beam filter is an attenuating material that reduces patient dose in the area peripheral to the object of interest. This project explores a method of moving the beam-attenuator aperture with the object of interest such that it always remains in the ROI. In this study, the ROI attenuator, which reduces the dose by 80% in the peripheral region, is mounted on a linear stage placed near the x-ray tube. Fluoroscopy is performed using the Microangiographic Fluoroscope (MAF) which is a high-resolution, CCD-based x-ray detector. A stainless-steel stent is selected as the object of interest, and is moved across the FOV and localized using an object-detection algorithm available in the IMAQ Vision package of LabVIEW. The ROI is moved to follow the stent motion. The pixel intensities are equalized in both FOV regions and an adaptive temporal filter dependent on the motion of the object of interest is implemented inside the ROI. With a temporal filter weight of 5% for the current image in the peripheral region, the SNR measured is 47.8. The weights inside the ROI vary between 10% and 33% with a measured SNR of 57.9 and 35.3 when the object is stationary and moving, respectively. This method allows patient dose reduction as well as maintenance of superior image quality in the ROI while tracking the object.
机译:利益区域(ROI)透视利用了大多数神经血管介入活性在仅在X射线成像视野(FOV)的一小部分中进行。 ROI光束滤光片是一种衰减材料,可减少对感兴趣对象的区域外围的患者剂量。该项目探讨了将光束衰减器光圈与感兴趣对象移动的方法,使得它始终仍然在ROI中。在该研究中,ROI衰减器在外围区域中将剂量减少80%,安装在放置在X射线管附近的线性级上。使用基于高分辨率的基于CCD的X射线检测器的微型荧光镜(MAF)进行荧光镜检查。选择不锈钢支架作为感兴趣的对象,并在FOV上移动并使用LabVIEW的IMAQ Vision包中提供的对象检测算法本地化。 ROI被移动以遵循支架运动。在FOV区域中,像素强度均衡,并且在ROI内实现了依赖于感兴趣对象的运动的自适应时间滤波器。对于外围区域中的当前图像的时间滤波器重量为5%,测量的SNR为47.8。 ROI内的重量在10%和33%之间,测量的SNR为57.9和35.3分别静止和移动。该方法允许患者剂量降低以及在跟踪物体的同时在ROI中维持卓越的图像质量。

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