Dept. of Biomed. Eng., Case Western Reserve Univ., Cleveland, OH.
IEEE Trans Med Imaging. 1995;14(4):733-46. doi: 10.1109/42.476114.
One potential way to reduce patient and staff X-ray fluoroscopy dose is to reduce the quantum exposure to the detector and compensate the additional noise with digital filtering. A new filtering method, spatio-temporal filtering with object detection, is described that reduces noise while minimizing motion and spatial blur. As compared to some conventional motion-detection filtering schemes, this object-detection method incorporates additional a priori knowledge of image content; i.e. much of the motion occurs in isolated long thin objects (catheters, guide wires, etc.). We create object-likelihood images and use these to control spatial and recursive temporal filtering such as to reduce blurring the objects of interest. We use automatically computed receiver operating characteristic (ROC) curves to optimize the object-likelihood enhancement method and determine that oriented matched filter kernels with 4 orientations are appropriate. The matched filter kernels are simple projected cylinders. We demonstrate the method on several representative X-ray fluoroscopy sequences to which noise is added to simulate very low dose acquisitions. With processing, we find that noise variance is significantly reduced with slightly less noise reduction near moving objects. We estimate an effective exposure reduction greater than 80%
减少患者和工作人员 X 射线荧光检查剂量的一种潜在方法是减少探测器的量子暴露,并通过数字滤波补偿额外的噪声。本文描述了一种新的滤波方法,即具有目标检测的时空滤波,该方法可在最小化运动和空间模糊的同时降低噪声。与一些传统的运动检测滤波方案相比,这种目标检测方法包含了对图像内容的更多先验知识;即,大部分运动发生在孤立的细长物体(导管、导丝等)中。我们创建目标似然图像,并使用这些图像来控制空间和递归时间滤波,以减少感兴趣的物体的模糊。我们使用自动计算的接收者操作特征(ROC)曲线来优化目标似然度增强方法,并确定 4 个方向的定向匹配滤波器核是合适的。匹配滤波器核是简单的投影圆柱体。我们在几个具有代表性的 X 射线荧光透视序列上演示了该方法,在这些序列中添加了噪声以模拟非常低剂量的采集。通过处理,我们发现噪声方差显著降低,而在移动物体附近的噪声减少略少。我们估计有效曝光减少超过 80%。