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Preliminary results on noise reduction using stackgrams for (low-dose) X-ray CT sinograms

机译:使用堆栈图(低剂量)X射线CT正弦图减少噪声的初步结果

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In low-dose X-ray computed tomography (CT), it is necessary to reduce the excessive X-ray quantum noise of the acquired data. This is the case especially when the filtered back-projection method is used for image reconstruction from sinogram data. In this study, we compare the conventional radial filtering direction of the sinogram to the recently introduced angular stackgram filtering technique. Our experimental tests were performed on simulated low-dose CT data. We modelled the X-ray quantum noise using a Gaussian distribution with a signal dependent variance for numerical phantoms simulating stop-and-shoot CT acquisitions. The noise model has been reported elsewhere. This experimentally verified model describes calibrated projection data, i.e. the acquired data after CT system calibration (including logarithmic transform, beam hardening, etc.). For our quantitative tests, we employed both linear Gaussian low-pass filters and non-linear L-filters with Gaussian weights. The stackgram technique provides the best resolution-noise trade-off in comparison with the radial sinogram filtering method, and thus a potential filtering approach to low-dose CT sinograms.
机译:在低剂量X射线计算机断层扫描(CT)中,有必要减少所获取数据的过多X射线量子噪声。特别是在将滤波后的反投影方法用于从正弦图数据进行图像重建的情况下。在这项研究中,我们将正弦图的常规径向滤波方向与最近推出的角度堆叠图滤波技术进行了比较。我们的实验测试是在模拟的低剂量CT数据上进行的。我们使用具有信号依赖方差的高斯分布对X射线量子噪声进行建模,以模拟幻影拍摄CT的数字体模。噪声模型在其他地方已有报道。这个经过实验验证的模型描述了校准后的投影数据,即CT系统校准后获得的数据(包括对数变换,射束硬化等)。对于我们的定量测试,我们同时使用了具有高斯权重的线性高斯低通滤波器和非线性L滤波器。与径向正弦图滤波方法相比,堆栈图技术提供了最佳的分辨率-噪声折衷,因此是一种针对低剂量CT正弦图的潜在滤波方法。

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