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A Device Enhancing and Denoising Algorithm for X-ray Cardiac Fluoroscopy

机译:一种增强X射线心脏荧光透视算法的装置增强与去噪算法

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In X-ray interventional imaging, improved denoising enables lower X-ray dose and better visualization, resulting in increased confidence in the therapeutic act. This article focuses on the denoising of fluoroscopic image sequences in interventional cardiology. The challenge with these images is the need to preserve fine details in terms of size and contrast, representing the tools manipulated by the operator. These tools superimpose over an anatomical background. This context drives us to propose an algorithm based on spatial-temporal filtering conditioned by a feature of interest map. Based on the confidence in the feature detection our algorithm will either filter, preserve or enhance the image content. Our method is fast and compares very favorably with state of the art methods both quantitatively on synthetic data and perceptually on clinical data.
机译:在X射线介入成像中,改善的去噪能够降低X射线剂量和更好的可视化,从而提高了治疗法的置信能力增加。本文侧重于介入心脏病学中的荧光镜图像序列的去噪。这些图像的挑战是需要在尺寸和对比方面保持细节,代表操作员操纵的工具。这些工具叠加在解剖背景上。此上下文驱动我们提出基于受感兴趣地图的特征的空间滤波的算法。基于特征检测的置信度,我们的算法将过滤,保留或增强图像内容。我们的方法快速,并且在临床数据上定量地对现有技术的状态非常有利地进行比较。

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