Yang Liutao, Li Zhongnian, Ge Rongjun, Zhao Junyong, Si Haipeng, Zhang Daoqiang
IEEE Trans Med Imaging. 2023 Apr;42(4):910-921. doi: 10.1109/TMI.2022.3219856. Epub 2023 Apr 3.
Low-Dose Computed Tomography (LDCT) technique, which reduces the radiation harm to human bodies, is now attracting increasing interest in the medical imaging field. As the image quality is degraded by low dose radiation, LDCT exams require specialized reconstruction methods or denoising algorithms. However, most of the recent effective methods overlook the inner-structure of the original projection data (sinogram) which limits their denoising ability. The inner-structure of the sinogram represents special characteristics of the data in the sinogram domain. By maintaining this structure while denoising, the noise can be obviously restrained. Therefore, we propose an LDCT denoising network namely Sinogram Inner-Structure Transformer (SIST) to reduce the noise by utilizing the inner-structure in the sinogram domain. Specifically, we study the CT imaging mechanism and statistical characteristics of sinogram to design the sinogram inner-structure loss including the global and local inner-structure for restoring high-quality CT images. Besides, we propose a sinogram transformer module to better extract sinogram features. The transformer architecture using a self-attention mechanism can exploit interrelations between projections of different view angles, which achieves an outstanding performance in sinogram denoising. Furthermore, in order to improve the performance in the image domain, we propose the image reconstruction module to complementarily denoise both in the sinogram and image domain.
低剂量计算机断层扫描(LDCT)技术能够减少对人体的辐射伤害,目前在医学成像领域正吸引着越来越多的关注。由于低剂量辐射会降低图像质量,LDCT检查需要专门的重建方法或去噪算法。然而,最近的大多数有效方法都忽略了原始投影数据(正弦图)的内部结构,这限制了它们的去噪能力。正弦图的内部结构代表了正弦图域中数据的特殊特征。在去噪时保持这种结构,可以明显抑制噪声。因此,我们提出了一种LDCT去噪网络,即正弦图内部结构变换器(SIST),以利用正弦图域中的内部结构来减少噪声。具体来说,我们研究了CT成像机制和正弦图的统计特征,设计了包括全局和局部内部结构的正弦图内部结构损失,以恢复高质量的CT图像。此外,我们提出了一个正弦图变换器模块,以更好地提取正弦图特征。使用自注意力机制的变换器架构可以利用不同视角投影之间的相互关系,在正弦图去噪方面取得了出色的性能。此外,为了提高在图像域的性能,我们提出了图像重建模块,以在正弦图和图像域中进行互补去噪。