Alam S K, Ophir J, Cespedes I, Varghese T
Riverside Res. Inst., New York, NY.
IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(6):1565-72. doi: 10.1109/58.738296.
In elastography, tissue under investigation is compressed, and the resulting strain is estimated from the gradient of displacement estimates. Therefore, it is important to accurately estimate the displacements (time-delay) for good quality elastograms. A principal source of error in time-delay estimation in elastography is the decorrelation of the echo signal due to tissue compression (decorrelation noise). Temporal stretching of the postcompression signals has been shown to reduce the decorrelation noise at small strains. In this article, we present a deconvolution filter that reduces the decorrelation even further when applied in conjunction with signal stretching. The performance of the proposed filter is evaluated using simulated data.
在弹性成像中,对所研究的组织进行压缩,并根据位移估计的梯度来估计产生的应变。因此,准确估计位移(时间延迟)对于获得高质量的弹性图很重要。弹性成像中时间延迟估计的一个主要误差源是由于组织压缩导致的回波信号去相关(去相关噪声)。已表明压缩后信号的时间拉伸可在小应变时降低去相关噪声。在本文中,我们提出一种反卷积滤波器,当与信号拉伸结合应用时,可进一步降低去相关。使用模拟数据评估了所提出滤波器的性能。