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使用相速度磁共振成像进行心脏壁运动分析的跟踪算法的开发与评估。

Development and evaluation of tracking algorithms for cardiac wall motion analysis using phase velocity MR imaging.

作者信息

Constable R T, Rath K M, Sinusas A J, Gore J C

机构信息

Department of Diagnostic Radiology, Yale University, New Haven, Connecticut 06510.

出版信息

Magn Reson Med. 1994 Jul;32(1):33-42. doi: 10.1002/mrm.1910320106.

Abstract

Phase velocity magnetic resonance imaging (MRI) has shown considerable potential for tracking distinct regions of the myocardium throughout the cardiac cycle. Phase contrast MR imaging produces multiple images, each phase encoded for velocity in a different direction, in which individual pixels depict the local motion of the tissue. In this work we present in detail three algorithms for tracking motion based on these images. Both simulated and phantom data are used to examine some of the problems encountered in practice in tracking points based on velocity maps. Solutions to these problems are offered when possible. The impact of noise and low order phase errors in the data on each of the three tracking approaches is examined. In addition, problems due to tissue expansion and contraction, to 2D versus 3D tracking, and to round off errors from motion which is small relative to pixel size or slice thickness, are considered. An example using data obtained in vivo is included to demonstrate the efficacy of the best of the three tracking algorithms in measuring left ventricular circumferential shortening preinfarct and postinfarct in a canine model.

摘要

相速度磁共振成像(MRI)在整个心动周期中追踪心肌不同区域方面显示出了巨大潜力。相位对比磁共振成像会生成多个图像,每个图像都针对不同方向的速度进行相位编码,其中各个像素描绘了组织的局部运动。在这项工作中,我们详细介绍了三种基于这些图像追踪运动的算法。模拟数据和体模数据都被用于研究在基于速度图追踪点时实际遇到的一些问题。可能的话,会提供这些问题的解决方案。研究了数据中的噪声和低阶相位误差对三种追踪方法中每一种的影响。此外,还考虑了由于组织扩张和收缩、二维与三维追踪以及相对于像素大小或切片厚度较小的运动的舍入误差所导致的问题。包含了一个使用体内获得的数据的示例,以证明三种追踪算法中最佳算法在测量犬模型梗死前和梗死后左心室圆周缩短方面的有效性。

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