Yabuki Ryuto, Yamaguchi Yusaku, Abou Al-Ola Omar M, Kojima Takeshi, Yoshinaga Tetsuya
Graduate School of Health Sciences, Tokushima University, 3-18-15 Kuramoto, Tokushima 770-8509, Japan.
Shikoku Medical Center for Children and Adults, National Hospital Organization, 2-1-1 Senyu, Zentsuji 765-8507, Japan.
J Imaging. 2024 Jul 23;10(8):178. doi: 10.3390/jimaging10080178.
Computed tomography (CT) imaging plays a crucial role in various medical applications, but noise in projection data can significantly degrade image quality and hinder diagnosis accuracy. Iterative algorithms for tomographic image reconstruction outperform transform methods, especially in scenarios with severe noise in projections. In this paper, we propose a method to dynamically adjust two parameters included in the iterative rules during the reconstruction process. The algorithm, named the parameter-extended expectation-maximization based on power divergence (PXEM), aims to minimize the weighted extended power divergence between the measured and forward projections at each iteration. Our numerical and physical experiments showed that PXEM surpassed conventional methods such as maximum-likelihood expectation-maximization (MLEM), particularly in noisy scenarios. PXEM combines the noise suppression capabilities of power divergence-based expectation-maximization with static parameters at every iteration and the edge preservation properties of MLEM. The experimental results demonstrated significant improvements in image quality in metrics such as the structural similarity index measure and peak signal-to-noise ratio. PXEM improves CT image reconstruction quality under high noise conditions through enhanced optimization techniques.
计算机断层扫描(CT)成像在各种医学应用中起着至关重要的作用,但投影数据中的噪声会显著降低图像质量并阻碍诊断准确性。断层图像重建的迭代算法优于变换方法,特别是在投影中存在严重噪声的情况下。在本文中,我们提出了一种在重建过程中动态调整迭代规则中包含的两个参数的方法。该算法名为基于功率散度的参数扩展期望最大化(PXEM),旨在在每次迭代时最小化测量投影和前向投影之间的加权扩展功率散度。我们的数值和物理实验表明,PXEM优于传统方法,如最大似然期望最大化(MLEM),特别是在噪声场景中。PXEM在每次迭代时将基于功率散度的期望最大化的噪声抑制能力与静态参数相结合,并具有MLEM的边缘保留特性。实验结果表明,在诸如结构相似性指数测量和峰值信噪比等指标方面,图像质量有显著提高。PXEM通过增强优化技术提高了高噪声条件下的CT图像重建质量。