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一种使用磁共振成像测量血管顺应性的速度相关方法。

A velocity correlation method for measuring vascular compliance using MR imaging.

作者信息

Urchuk S N, Plewes D B

机构信息

Department of Medical Biophysics, University of Toronto, Ontario, Canada.

出版信息

J Magn Reson Imaging. 1995 Nov-Dec;5(6):628-34. doi: 10.1002/jmri.1880050603.

Abstract

A method for estimating vascular compliance using MR velocity imaging is presented. The technique combines an analysis of pulse propagation, based on spatially averaged equations of continuity and momentum, together with phase-contrast velocity measurements to estimate the compliance from a correlation of second-order spatial and temporal velocity derivatives. The technique can be applied in the presence of reflected flow waves and uses velocity data acquired throughout the entire cardiac cycle. The accuracy of the technique was assessed in distensible vessel phantoms spanning a physiological range of compliance through a comparison with compliance estimates obtained using high-resolution MR imaging and pressure transducers. The mean error of all measurements was found to be 0.04 +/- 0.02% per mm Hg, with the relative errors ranging from 1.2% to 46%. Error was found to decrease as the temporal sampling rate and/or image plane separation were increased. This suggests that an accurate hemodynamic evaluation of a vessel's elastic properties is feasible with MR velocity imaging techniques.

摘要

提出了一种使用磁共振速度成像估计血管顺应性的方法。该技术结合了基于空间平均连续性方程和动量方程的脉搏传播分析,以及相位对比速度测量,以根据二阶空间和时间速度导数的相关性来估计顺应性。该技术可应用于存在反射流波的情况下,并使用在整个心动周期采集的速度数据。通过与使用高分辨率磁共振成像和压力传感器获得的顺应性估计值进行比较,在跨越生理顺应性范围的可扩张血管模型中评估了该技术的准确性。发现所有测量的平均误差为每毫米汞柱0.04 +/- 0.02%,相对误差范围为1.2%至46%。发现误差随着时间采样率和/或图像平面间距的增加而减小。这表明使用磁共振速度成像技术对血管弹性特性进行准确的血流动力学评估是可行的。

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