Løvstakken Lasse, Bjaerum Steinar, Kristoffersen Kjell, Haaverstad Rune, Torp Hans
NTNU, Department of Circulation and Medical Imaging, Trondheim, Norway.
IEEE Trans Ultrason Ferroelectr Freq Control. 2006 Sep;53(9):1597-608. doi: 10.1109/tuffc.2006.1678188.
We propose a new algorithm for real-time, adaptive-clutter-rejection filtering in ultrasound color flow imaging (CFI) and related techniques. The algorithm is based on regression filtering using eigenvectors of the signal correlation matrix as a basis for representing clutter, a method that previously has been considered too computationally demanding for real-time processing in general CFI applications. The data acquisition and processing scheme introduced allows for a more localized sampling of the clutter statistics and, therefore, an improved clutter attenuation for lower filter orders. By using the iterative power method technique, the dominant eigenvalues and corresponding eigenvectors of the correlation matrix can be estimated efficiently, rendering real-time operation feasible on desktop computers. A new adaptive filter order algorithm is proposed that successfully estimates the proper dimension of the clutter basis, previously one of the major drawbacks of this clutter-rejection technique. The filter algorithm performance and computational demands has been compared to that of conventional clutter filters. Examples have been included which confirms that, by adapting the clutter-rejection filter to estimates of the clutter-signal statistics, improved attenuation of the clutter signal can be achieved in normal as well as more excessive cases of tissue movement and acceleration.
我们提出了一种用于超声彩色血流成像(CFI)及相关技术中的实时、自适应杂波抑制滤波的新算法。该算法基于回归滤波,使用信号相关矩阵的特征向量作为表示杂波的基础,这种方法以前在一般CFI应用中被认为对于实时处理计算要求过高。所引入的数据采集和处理方案允许对杂波统计进行更局部的采样,因此对于较低的滤波器阶数可以提高杂波衰减。通过使用迭代幂法技术,可以有效地估计相关矩阵的主导特征值和相应的特征向量,使得在台式计算机上进行实时操作成为可能。提出了一种新的自适应滤波器阶数算法,该算法成功地估计了杂波基的适当维度,这是以前这种杂波抑制技术的主要缺点之一。已将该滤波器算法的性能和计算要求与传统杂波滤波器进行了比较。给出的示例证实,通过使杂波抑制滤波器适应杂波信号统计的估计,在正常以及组织运动和加速度更剧烈的情况下都可以实现对杂波信号更好的衰减。