Rao Min, Varghese Tomy
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Sep;54(9):1903-7. doi: 10.1109/tuffc.2007.475.
Spatial angular compounding for elastography is a new technique that enables the reduction of noise artifacts in elastograms. This technique is most effective when the angular strain estimates to be averaged or compounded are uncorrelated. In this paper, we present a theoretical analysis of the correlation between pre- and postcompression radio-frequency echo signals acquired from the same location but at different beam insonification angles. The accuracy of the theoretical results is verified using radiofrequency pre- and postcompression echo signals acquired using a real-time clinical scanner on tissue-mimicking uniformly elastic and homogenous phantoms. The theory predicts an increased signal decorrelation with an increase in the beam-steered insonification angle as the applied strain increases and for increasing depths in the medium. Theoretical results provide useful information regarding the correlation of the angular strain estimates obtained from different beam angles that helps in finding optimum compounding schemes for elastography.
弹性成像的空间角度复合是一种能够减少弹性图中噪声伪像的新技术。当要平均或复合的角度应变估计值不相关时,该技术最为有效。在本文中,我们对从同一位置但不同波束照射角度采集的压缩前和压缩后射频回波信号之间的相关性进行了理论分析。使用在组织模拟均匀弹性和均质体模上的实时临床扫描仪采集的射频压缩前和压缩后回波信号,验证了理论结果的准确性。该理论预测,随着所施加应变的增加以及介质中深度的增加,随着波束转向照射角度的增加,信号去相关性会增加。理论结果提供了关于从不同波束角度获得的角度应变估计值相关性的有用信息,这有助于找到弹性成像的最佳复合方案。