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Image sequence filtering in quantum-limited noise with applications to low-dose fluoroscopy

机译:量子限制噪声中的图像序列过滤及其在低剂量荧光检查中的应用

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摘要

Clinical angiography requires hundreds of X-ray images, putting the patients and particularly the medical staff at risk. Dosage reduction involves an inevitable sacrifice in image quality. In this work, the latter problem is addressed by first modeling the signal-dependent, Poisson-distributed noise that arises as a result of this dosage reduction. The commonly utilized noise model for single images is shown to be obtainable from the new model. Stochastic temporal filtering techniques are proposed to enhance clinical fluoroscopy sequences corrupted by quantum mottle. The temporal versions of these filters as developed here are more suitable for filtering image sequences, as correlations along the time axis can be utilized. For these dynamic sequences, the problem of displacement field estimation is treated in conjunction with the filtering stage to ensure that the temporal correlations are taken along the direction of motion to prevent object blur.
机译:临床血管造影需要数百张X射线图像,这使患者尤其是医务人员处于危险之中。减少剂量会不可避免地牺牲图像质量。在这项工作中,后一个问题通过首先对由于这种剂量减少而产生的信号相关的,泊松分布的噪声进行建模来解决。单个图像的常用噪声模型显示可从新模型获得。提出了随机时间滤波技术以增强被量子斑驳破坏的临床荧光透视序列。由于可以利用沿时间轴的相关性,因此本文开发的这些滤波器的时间版本更适合于过滤图像序列。对于这些动态序列,结合滤波阶段处理位移场估计问题,以确保沿运动方向获取时间相关性,以防止物体模糊。

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