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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental evaluation of velocity and power estimation for ultrasound blood flow imaging, by means of a two-dimensional autocorrelation approach
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Experimental evaluation of velocity and power estimation for ultrasound blood flow imaging, by means of a two-dimensional autocorrelation approach

机译:二维自相关方法对超声血流成像速度和功率估计的实验评估

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This paper evaluates experimentally the performance of a novel axial velocity estimator, the 2D autocorrelator, and its Doppler power estimation counterpart, the 2D zero-lag autocorrelator, in the context of ultrasound color flow mapping. The evaluation also encompasses the well-established 1D autocorrelation technique for velocity estimation and its corresponding power estimator (1D zero-lag autocorrelator), to allow performance comparisons under identical conditions. Clutter-suppressed in vitro data sets from a steady-flow system are used to document the effect of the range gate and ensemble length, noise level and angle of insonation on the precision of the velocity estimates. The same data sets are used to examine issues related to the estimation of the Doppler signal's power. The first-order statistics of power estimates from regions corresponding to flow and noise are determined experimentally and the ability of power-based thresholding to separate flow signals from noise is characterized by means of ROC analysis. In summary, the results of the in vitro evaluation show that the proposed 2D-autocorrelation form of processing is consistently better than the corresponding 1D-autocorrelation techniques, in terms of both velocity and power estimation. Therefore, given their relatively modest implementation requirements, the 2D-autocorrelation algorithms for velocity and power estimation appear to represent a superior, yet realistic, alternative to conventional Doppler processing for color flow mapping.
机译:本文在超声色流映射的背景下,通过实验评估了新型轴向速度估计器2D自相关器及其多普勒功率估计对应物2D零滞后自相关器的性能。评估还包括用于速度估计的行之有效的一维自相关技术及其相应的功率估计器(一维零滞后自相关器),以允许在相同条件下进行性能比较。使用来自稳定流系统的杂波抑制的体外数据集来记录距离门和合奏长度,噪声水平和共振角对速度估计精度的影响。相同的数据集用于检查与多普勒信号功率估计有关的问题。通过实验确定来自与流量和噪声相对应的区域的功率估计值的一阶统计量,并通过ROC分析来表征基于功率的阈值分离流量信号与噪声的能力。总而言之,体外评估的结果表明,就速度和功率估计而言,所提出的二维自相关形式的处理始终优于相应的一维自相关技术。因此,鉴于其相对适度的实现要求,用于速度和功率估计的2D自相关算法似乎代表了一种优于传统的多普勒色彩流图处理的替代方法,但很现实。

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