Division of Nuclear Medicine and Molecular Imaging, Geneva University Hospital, Geneva, Switzerland.
IEEE Trans Med Imaging. 2013 Sep;32(9):1707-22. doi: 10.1109/TMI.2013.2265136. Epub 2013 Jun 3.
X-ray computed tomography (CT) imaging of patients with metallic implants usually suffers from streaking metal artifacts. In this paper, we propose a new projection completion metal artifact reduction (MAR) algorithm by formulating the completion of missing projections as a regularized inverse problem in the wavelet domain. The Douglas-Rachford splitting (DRS) algorithm was used to iteratively solve the problem. Two types of prior information were exploited in the algorithm: 1) the sparsity of the wavelet coefficients of CT sinograms in a dictionary of translation-invariant wavelets and 2) the detail wavelet coefficients of a prior sinogram obtained from the forward projection of a segmented CT image. A pseudo- L0 synthesis prior was utilized to exploit and promote the sparsity of wavelet coefficients. The proposed L0-DRS MAR algorithm was compared with standard linear interpolation and the normalized metal artifact reduction (NMAR) approach proposed by Meyer using both simulated and clinical studies including hip prostheses, dental fillings, spine fixation and electroencephalogram electrodes in brain imaging. The qualitative and quantitative evaluations showed that our algorithm substantially suppresses streaking artifacts and can outperform both linear interpolation and NMAR algorithms.
X 射线计算机断层扫描(CT)成像通常会受到金属植入物的条纹状金属伪影的影响。在本文中,我们提出了一种新的投影完成金属伪影减少(MAR)算法,通过在小波域中将缺失投影的完成表述为正则化反问题。Douglas-Rachford 分裂(DRS)算法用于迭代求解该问题。该算法利用了两种类型的先验信息:1)在平移不变小波字典中 CT 正弦图的小波系数的稀疏性,以及 2)从分段 CT 图像的正向投影获得的先验正弦图的细节小波系数。利用伪 L0 综合先验来利用和促进小波系数的稀疏性。使用模拟和临床研究,包括髋关节假体、牙填充物、脊柱固定和脑成像中的脑电图电极,将提出的 L0-DRS MAR 算法与标准线性插值和 Meyer 提出的归一化金属伪影减少(NMAR)方法进行了比较。定性和定量评估表明,我们的算法可以显著抑制条纹状伪影,并且可以优于线性插值和 NMAR 算法。