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二维相位阵列心肌弹性成像的基本性能评估。

Fundamental performance assessment of 2-D myocardial elastography in a phased-array configuration.

机构信息

Dept. of Biomed. Eng., Columbia Univ., New York, NY, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Oct;56(10):2320-7. doi: 10.1109/TUFFC.2009.1313.

Abstract

Two-dimensional myocardial elastography, an RF-based, speckle-tracking technique, uses 1-D cross-correlation and recorrelation methods in a 2-D search, and can estimate and image the 2-D transmural motion and deformation of the myocardium so as to characterize the cardiac function. Based on a 3-D finite-element (FE) canine left-ventricular model, a theoretical framework was previously developed by our group to evaluate the estimation quality of 2-D myocardial elastography using a linear array. In this paper, an ultrasound simulation program, Field II, was used to generate the RF signals of a model of the heart in a phased-array configuration and under 3-D motion conditions; thus simulating a standard echocardiography exam. The estimation method of 2-D myocardial elastography was adapted for use with such a configuration. All elastographic displacements and strains were found to be in good agreement with the FE solutions, as indicated by the mean absolute error (MAE) between the two. The classified first and second principal strains approximated the radial and circumferential strains, respectively, in the phased-array configuration. The results at different sonographic signal-to-noise ratios (SNR(s)) showed that the MAEs of the axial, lateral, radial, and circumferential strains remained relatively constant when the SNR(s) was equal to or higher than 20 dB. The MAEs of the strain estimation were not significantly affected when the acoustic attenuation was included in the simulations. A significantly reduced number of scatterers could be used to speed up the simulation, without sacrificing the estimation quality.The proposed framework can further be used to assess the estimation quality, explore the theoretical limitation and investigate the effects of various parameters in 2-D myocardial elastography under more realistic conditions.

摘要

二维心肌弹性成像技术是一种基于射频的斑点追踪技术,它在二维搜索中使用一维互相关和再相关方法,可以估计和成像心肌的二维穿透运动和变形,从而表征心脏功能。基于一个三维有限元(FE)犬左心室模型,我们小组之前开发了一个理论框架,用于评估线性阵列中二维心肌弹性成像的估计质量。在本文中,我们使用超声模拟程序 Field II 生成相控阵配置和三维运动条件下心脏模型的 RF 信号,从而模拟标准超声心动图检查。我们还将二维心肌弹性成像的估计方法适用于这种配置。所有弹性位移和应变都与 FE 解非常吻合,两个结果之间的平均绝对误差(MAE)表明了这一点。分类的第一和第二主应变分别近似于相控阵配置中的径向和周向应变。不同超声信噪比(SNR(s))的结果表明,当 SNR(s)等于或高于 20 dB 时,轴向、侧向、径向和周向应变的 MAE 相对保持恒定。当模拟中包含声衰减时,应变估计的 MAE 没有受到显著影响。在不牺牲估计质量的情况下,可以使用显著减少的散射体来加速模拟。该框架可进一步用于评估在更实际条件下二维心肌弹性成像的估计质量、探索理论限制以及研究各种参数的影响。

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