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首页> 外文期刊>IEEE Transactions on Medical Imaging >Estimation of Images and Nonrigid Deformations in Gated Emission CT
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Estimation of Images and Nonrigid Deformations in Gated Emission CT

机译:门控发射CT图像和非刚性变形的估计

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摘要

In this paper, we propose and test a new iterative algorithm to simultaneously estimate the nonrigid motion vector fields and the emission images for a complete cardiac cycle in gated cardiac emission tomography. We model the myocardium as an elastic material whose motion does not generate large amounts of strain. As a result, our method is based on minimizing an objective function consisting of the negative logarithm of a maximum likelihood image reconstruction term, the standard biomechanical model of strain energy, and an image matching term that ensures a measure of agreement of intensities between frames. Simulations are obtained using data for the four-dimensional (4-D) NCAT phantom. The data models realistic noise levels in a typical gated myocardial perfusion SPECT study. We show that our simultaneous algorithm produces images with improved spatial resolution characteristics and noise properties compared with those obtained from postsmoothed 4-D maximum likelihood methods. The simulations also demonstrate improved motion estimates over motion estimation using independently reconstructed images.
机译:在本文中,我们提出并测试了一种新的迭代算法,可以同时估计非刚性运动矢量场和门控心脏发射断层扫描中整个心脏周期的发射图像。我们将心肌建模为一种弹性材料,其运动不会产生大量应变。结果,我们的方法基于最小化目标函数的目标函数,该目标函数包括最大似然图像重建项的负对数,应变能的标准生物力学模型以及确保帧之间强度一致的度量的图像匹配项。使用针对四维(4-D)NCAT体模的数据获得仿真。数据模拟了典型门控心肌灌注SPECT研究中的实际噪声水平。我们表明,与从平滑后的4-D最大似然方法获得的图像相比,我们的同步算法产生的图像具有改进的空间分辨率特性和噪声特性。该仿真还证明了使用独立重构的图像相比运动估计改进了运动估计。

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