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Scatter reduction for high resolution image detectors with a region of interest attenuator

机译:具有感兴趣区域衰减器的高分辨率图像检测器的散射减少

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摘要

Compton scatter is the main interaction of x-rays with objects undergoing radiographic and fluoroscopic imaging procedures. Such scatter is responsible for reducing image signal to noise ratio which can negatively impact object detection especially for low contrast objects. To reduce scatter, possible methods are smaller fields-of-view, larger air gaps and the use of an anti-scatter grid. Smaller fields of view may not be acceptable and scanned-beam radiography is not practical for real-time imaging. Air gaps can increase geometric unsharpness and thus degrade image resolution. Deployment of an anti-scatter grid is not well suited for high resolution imagers due to the unavailability of high line density grids needed to prevent grid-line artifacts. However, region of interest (ROI) imaging can be used not only for dose reduction but also for scatter reduction in the ROI. The ROI region receives unattenuated x-rays while the peripheral region receives x-rays reduced in intensity by an ROI attenuator. The scatter within the ROI part of the image originates from both the unattenuated ROI and the attenuated peripheral region. The scatter contribution from the periphery is reduced in intensity because of the reduced primary x-rays in that region and the scatter fraction in the ROI is thus reduced. In this study, the scatter fraction for various kVp’s, air-gaps and field sizes was measured for a uniform head equivalent phantom. The scatter fraction in the ROI was calculated using a derived scatter fraction formula, which was validated with experimental measurements. It is shown that use of a ROI attenuator can be an effective way to reduce both scatter and patient dose while maintaining the superior image quality of high resolution detectors.
机译:康普顿散射是X射线与接受射线照相和荧光透视成像程序的物体的主要相互作用。这种散射负责降低图像信噪比,这可能会对目标检测产生负面影响,尤其是对于低对比度目标。为了减少散射,可能的方法是较小的视场,较大的气隙和使用防散射栅格。较小的视场可能是不可接受的,并且扫描束射线照相术无法用于实时成像。气隙会增加几何不清晰度,从而降低图像分辨率。由于没有防止网格线伪影所需的高线密度网格,因此防散射网格的部署不适用于高分辨率成像器。但是,感兴趣区域(ROI)成像不仅可以用于减少剂量,还可以用于减少ROI中的散射。 ROI区域接收未衰减的X射线,而外围区域接收强度被ROI衰减器降低的X射线。图像的ROI部分内的散射来自未衰减的ROI和衰减的外围区域。由于该区域中的原始X射线减少,因此周边区域的散射贡献降低了,因此ROI中的散射率也降低了。在这项研究中,针对均匀的头部等效体模,测量了各种kVp,气隙和场大小的散射分数。使用导出的散射分数公式计算ROI中的散射分数,该公式已通过实验测量进行了验证。结果表明,使用ROI衰减器可以是减少散射和患者剂量的有效方法,同时又能保持高分辨率检测器的卓越图像质量。

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