Long Will, Bradway David, Ahmed Rifat, Long James, Trahey Gregg E
Philips, Cambridge, MA 02141 USA.
Department of Biomedical Engineering, Duke University, Durham, NC 27708 USA.
IEEE Open J Ultrason Ferroelectr Freq Control. 2022;2:106-118. doi: 10.1109/ojuffc.2022.3184914. Epub 2022 Jun 21.
The appropriate selection of a clutter filter is critical for ensuring the accuracy of velocity estimates in ultrasound color flow imaging. Given the complex spatio-temporal dynamics of flow signal and clutter, however, the manual selection of filters can be a significant challenge, increasing the risk for bias and variance introduced by the removal of flow signal and/or poor clutter suppression. We propose a novel framework to adaptively select clutter filter settings based on color flow image quality feedback derived from the spatial coherence of ultrasonic backscatter. This framework seeks to relax assumptions of clutter magnitude and velocity that are traditionally required in existing adaptive filtering methods to generalize clutter filtering to a wider range of clinically-relevant color flow imaging conditions. In this study, the relationship between color flow velocity estimation error and the spatial coherence of clutter filtered channel signals was investigated in Field II simulations for a wide range of flow and clutter conditions. This relationship was leveraged in a basic implementation of coherence-adaptive clutter filtering (CACF) designed to dynamically adapt clutter filters at each imaging pixel and frame based on local measurements of spatial coherence. In simulation studies with known scatterer and clutter motion, CACF was demonstrated to reduce velocity estimation bias while maintaining variance on par with conventional filtering.
对于确保超声彩色血流成像中速度估计的准确性而言,恰当选择杂波滤波器至关重要。然而,鉴于血流信号和杂波复杂的时空动态特性,手动选择滤波器可能是一项重大挑战,这会增加因去除血流信号和/或杂波抑制不佳而引入偏差和方差的风险。我们提出了一种新颖的框架,可基于从超声背散射的空间相干性得出的彩色血流图像质量反馈来自适应地选择杂波滤波器设置。该框架旨在放宽现有自适应滤波方法中传统上所需的杂波幅度和速度假设,以便将杂波滤波推广到更广泛的临床相关彩色血流成像条件。在本研究中,在Field II模拟中针对广泛的血流和杂波条件,研究了彩色血流速度估计误差与杂波滤波通道信号的空间相干性之间的关系。这种关系被用于相干自适应杂波滤波(CACF)的基本实现中,该实现旨在基于空间相干性的局部测量在每个成像像素和帧处动态调整杂波滤波器。在具有已知散射体和杂波运动的模拟研究中,已证明CACF可减少速度估计偏差,同时保持与传统滤波相当的方差。