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存在杂波情况下超声彩色血流成像中的最佳速度估计

Optimal velocity estimation in ultrasound color flow imaging in presence of clutter.

作者信息

Løvstakken Lasse, Bjaerum Steinar, Torp Hans

机构信息

NTNU, Department of Circulation and Medical Imaging, Trondheim, Norway.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Mar;54(3):539-49. doi: 10.1109/tuffc.2007.277.

Abstract

In color flow imaging (CFI), the rejection of tissue clutter signal is treated separately from blood velocity estimation by high-pass filtering the received Doppler signal. The complete suppression of clutter is then difficult to achieve without affecting the subsequent velocity estimates. In this work, a different approach to velocity estimation is investigated, based on a statistical model of the signal from both clutter and blood. An analytic expression for the Cramer-Rao lower bound (CRLB) is developed, and used to determine the existence of an efficient maximum likelihood estimator (MLE) of blood velocity in CFI when assuming full knowledge of the clutter statistics. We further simulate and compare the performance of the MLE to that of the autocorrelation method (ACM) using finite-impulse response (FIR) and polynomial regression clutter filters. Two signal scenarios are simulated, representing a central and peripheral vessel. Simulations showed that, by including 3-9 (independent) spatial points, the MLE variance approached the CRLB in both scenarios. The ACM was approximately unbiased only for the central scenario in the clutter filter pass band, then with a variance of up to four times the CRLB. The ACM suffered from a severe bias in the filter transition region, and a significant performance gain was achieved here using the MLE. For practical use, the clutter properties must be estimated. We finally replaced the known clutter statistics with an estimate obtained from low-rank approximations of the received sample correlation matrix. Used in the model-based framework, this method came close to the performance of the MLE, and it may be an important step toward a practical model-based estimator, including tissue clutter with optimal performance.

摘要

在彩色血流成像(CFI)中,通过对接收的多普勒信号进行高通滤波,将组织杂波信号的抑制与血流速度估计分开处理。然而,在不影响后续速度估计的情况下,很难完全抑制杂波。在这项工作中,我们研究了一种基于杂波和血流信号统计模型的不同速度估计方法。我们推导了克拉美罗下界(CRLB)的解析表达式,并用于确定在假设完全了解杂波统计信息的情况下,CFI中血流速度有效最大似然估计器(MLE)的存在性。我们还使用有限脉冲响应(FIR)和多项式回归杂波滤波器,模拟并比较了MLE与自相关方法(ACM)的性能。我们模拟了两种信号场景,分别代表中心血管和外周血管。模拟结果表明,在两种场景下,通过纳入3 - 9个(独立)空间点,MLE的方差接近CRLB。ACM仅在杂波滤波器通带内的中心场景下近似无偏,其方差高达CRLB的四倍。在滤波器过渡区域,ACM存在严重偏差,而使用MLE在此处可显著提高性能。在实际应用中,必须估计杂波特性。我们最终用从接收样本相关矩阵的低秩近似中获得的估计值取代了已知的杂波统计信息。在基于模型的框架中使用这种方法,其性能接近MLE,这可能是迈向具有最佳性能的实用基于模型的估计器(包括组织杂波)的重要一步。

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