Brankov Jovan G, Yang Yongyi, Wernick Miles N
Illinois Institute of Technology, Department of Electrical and Computer Engineering, 3301 South Dearborn Street, Chicago, Illinois 60616, USA.
Med Phys. 2005 Sep;32(9):2839-49. doi: 10.1118/1.2013027.
In this paper we present a spatiotemporal processing approach, based on deformable mesh modeling, for noise reduction in gated cardiac single-photon emission computed tomography images. Because of the partial volume effect (PVE), clinical cardiac-gated perfusion images exhibit a phenomenon known as brightening-the myocardium appears to become brighter as the heart wall thickens. Although brightening is an artifact, it serves as an important diagnostic feature for assessment of wall thickening in clinical practice. Our proposed processing algorithm aims to preserve this important diagnostic feature while reducing the noise level in the images. The proposed algorithm is based on the use of a deformable mesh for modeling the cardiac motion in a gated cardiac sequence, based on which the images are processed by smoothing along space-time trajectories of object points while taking into account the PVE. Our experiments demonstrate that the proposed algorithm can yield significantly more-accurate results than several existing methods.
在本文中,我们提出了一种基于可变形网格建模的时空处理方法,用于门控心脏单光子发射计算机断层扫描图像的降噪。由于部分容积效应(PVE),临床心脏门控灌注图像呈现出一种称为“变亮”的现象——随着心脏壁增厚,心肌看起来会变得更亮。尽管变亮是一种伪影,但在临床实践中,它是评估心肌增厚的重要诊断特征。我们提出的处理算法旨在保留这一重要诊断特征,同时降低图像中的噪声水平。所提出的算法基于使用可变形网格对门控心脏序列中的心脏运动进行建模,在此基础上,在考虑PVE的同时,沿着物体点的时空轨迹进行平滑处理来对图像进行处理。我们的实验表明,与几种现有方法相比,所提出的算法能够产生明显更准确的结果。