Guo Hong, Zeng Dong, Zhang Hua, Huang Jing, Zhang Jing, Ma Jianhua
Department of Radiology, General Hospital, Tianjin Medical University, Tianjin 300052, China.E-mail:
Nan Fang Yi Ke Da Xue Xue Bao. 2015 Aug;35(9):1258-62.
Ring artifacts often appear in flat-panel detector-based CT images due to the malfunction or mis-calibration of the detector elements that result in stripe artifacts in the line integral projection (sinogram) data. The ring artifacts lower the image quality and affect image-based diagnoses. Here we propose a ring artifacts removal approach based on wavelet filtering in the sinogram domain. The line integral projection (sinogram) dataset were divided into 4 sub-sinogram dataset, and for each of them the wavelet decomposition operation was employed to produce the associated wavelet dataset, followed by filtering operation on the vertical detail band and the low-pass detail band. Wavelet reconstruction operation was then performed, and the weighted moving average filter was used to yield the filtered sinogram, which was processed using filtered back-projection (FBP) for image reconstruction. The results showed that the proposed approach could effectively remove the ring artifacts while preserving the structural information of the image.
由于探测器元件的故障或校准错误,基于平板探测器的CT图像中经常会出现环形伪影,这会导致线积分投影(正弦图)数据中出现条纹伪影。环形伪影会降低图像质量并影响基于图像的诊断。在此,我们提出一种基于正弦图域小波滤波的环形伪影去除方法。将线积分投影(正弦图)数据集划分为4个子正弦图数据集,对每个子数据集进行小波分解操作以生成相关的小波数据集,然后对垂直细节带和低通细节带进行滤波操作。接着进行小波重构操作,并使用加权移动平均滤波器生成滤波后的正弦图,再通过滤波反投影(FBP)对其进行图像重建处理。结果表明,所提出的方法能够在保留图像结构信息的同时有效去除环形伪影。