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A variation-based ring artifact correction method with sparse constraint for flat-detector CT

机译:平面约束CT变分稀疏约束的环形伪影校正方法

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The reconstructed slice quality of flat-detector computed tomography (CT) is often disturbed by concentric-ring artifacts. Since concentric rings in CT slices appear as straight stripes when transformed into polar coordinates, a variation-based model is proposed to suppress the stripes. The method is motivated by two observations about stripes in polar coordinates: (1) ring artifacts attenuate gradually along the radial direction, leading to a sparse distribution of stripes and (2) stripes greatly distort the image gradient across the stripes, while slightly affecting the image gradient along the stripes. Thus, a l(1)-norm-based data fidelity term and a l(0)-norm/l(1)-norm unidirectional variation-based regularization term are presented to characterize the stripes. The alternating direction method of multipliers is introduced to solve the resulting minimization problem. Moreover, we discuss the interpolation methods used in coordinate transformation and find that the nearest neighbor interpolation is optimal. Experimental results on simulated and real data demonstrate that our method can correct ring artifacts effectively compared with state-of-the-art coordinate transformation-based methods, as well as preserve the structures and details of slices.
机译:平板探测器计算机断层扫描(CT)的重建切片质量通常会受到同心环伪影的干扰。由于CT切片中的同心环在转换为极坐标时显示为直线条纹,因此提出了基于变异的模型来抑制条纹。该方法是由对极坐标中的条纹的两次观测所激发的:(1)环形伪像沿径向方向逐渐衰减,导致条纹稀疏分布;(2)条纹极大地扭曲了整个条纹上的图像梯度,同时对条纹产生了轻微影响沿条纹的图像渐变。因此,提出了基于l(1)-范数的数据保真度项和基于l(0)-norm / l(1)-范式单向变化的正则化项来表征条纹。引入乘法器的交替方向方法来解决由此产生的最小化问题。此外,我们讨论了坐标变换中使用的插值方法,发现最近邻插值是最佳的。在模拟和真实数据上的实验结果表明,与基于最新坐标变换的方法相比,我们的方法可以有效地校正环形伪像,并保留切片的结构和细节。

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