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SNR-weighted Sinogram Smoothing with Improved Noise-resolution Properties for Low-dose X-ray Computed Tomography

机译:低剂量X射线计算机断层摄影术具有改善的噪声分辨率特性的SNR加权国歌滤波平滑

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To treat the noise in low-dose x-ray CT projection data more accurately, analysis of the noise properties of the data and development of a corresponding efficient noise treatment method are two major problems to be addressed. In order to obtain an accurate and realistic model to describe the x-ray CT system, we acquired thousands of repeated measurements on different phantoms at several fixed scan angles by a GE high-speed multi-slice spiral CT scanner. The collected data were calibrated and log-transformed by the sophisticated system software, which converts the detected photon energy into sinogram data that satisfies the Radon transform. From the analysis of these experimental data, a nonlinear relation between mean and variance for each datum of the sinogram was obtained. In this paper, we integrated this nonlinear relation into a penalized likelihood statistical framework for a SNR (signal-to-noise ratio) adaptive smoothing of noise in the sinogram. After the proposed preprocessing, the sinograms were reconstructed with unapodized FBP (filtered backprojection) method. The resulted images were evaluated quantitatively, in terms of noise uniformity and noise-resolution tradeoff, with comparison to other noise smoothing methods such as Hanning filter and Butterworth filter at different cutoff frequencies. Significant improvement on noise and resolution tradeoff and noise property was demonstrated.
机译:为了更准确地处理低剂量X射线CT投影数据中的噪声,分析数据的噪声特性以及开发相应的有效噪声处理方法是需要解决的两个主要问题。为了获得描述X射线CT系统的准确,逼真的模型,我们使用GE高速多层螺旋CT扫描仪在几个固定的扫描角度上对不同体模进行了数千次重复测量。收集的数据通过复杂的系统软件进行校准和对数转换,该软件将检测到的光子能量转换为满足Radon变换的正弦图数据。通过对这些实验数据的分析,获得了正弦图每个数据的均值和方差之间的非线性关系。在本文中,我们将这种非线性关系集成到了惩罚似然统计框架中,以对正弦图中的噪声进行SNR(信噪比)自适应平滑。经过提议的预处理后,正弦图通过未切趾的FBP(滤波反投影)方法重建。与其他噪声平滑方法(如Hanning滤波器和Butterworth滤波器)在不同的截止频率下相比,根据噪声均匀性和噪声分辨率折衷对所得图像进行了定量评估。噪声和分辨率的权衡和噪声特性得到了显着改善。

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