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Spatio-temporally smoothed coherence factor for ultrasound imaging [Correspondence]

机译:超声成像的时空平滑相干因子[对应]

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Coherence-factor-like beamforming methods, such as the coherence factor (CF), the phase coherence factor (PCF), or the sign coherence factor (SCF), have been applied to suppress side and/or grating lobes and clutter in ultrasound imaging. These adaptive weighting factors can be implemented effectively with low computational complexity to improve image contrast properties. However, because of low SNR, the resulting images may suffer from deficiencies, including reduced overall image brightness, increased speckle variance, black-region artifacts surrounding hyperechoic objects, and underestimated magnitudes of point targets. To overcome these artifacts, a new spatio-temporal smoothing procedure is introduced to the CF method. It results in a smoothed coherence factor which measures the signal coherence among the beamsums of the divided subarrays over the duration of a transmit pulse. In addition, the procedure is extended to the SCF using the sign bits of the received signals. Simulated and real experimental data sets demonstrate that the proposed methods can improve the robustness of the CF and SCF with reduced speckle variance and significant removal of black-region artifacts, while preserving the ability to suppress clutter. Consequently, image contrast can be enhanced, especially for anechoic cysts.
机译:类似相干因子的波束形成方法,例如相干因子(CF),相位相干因子(PCF)或符号相干因子(SCF),已被用于抑制超声成像中的旁瓣和/或栅瓣和杂波。可以以低计算复杂度有效地实现这些自适应加权因子,以改善图像对比度特性。但是,由于SNR低,所得图像可能会出现缺陷,包括整体图像亮度降低,斑点变化增加,高回声对象周围的黑色区域伪影以及点目标的幅度被低估。为了克服这些伪像,将一种新的时空平滑过程引入了CF方法。它导致平滑的相干因子,该因子测量在发射脉冲的持续时间内划分的子阵列的波束和之间的信号相干性。另外,使用接收到的信号的符号位将过程扩展到SCF。模拟和真实的实验数据集表明,所提出的方法可以提高CF和SCF的鲁棒性,同时减少散斑变化并显着消除黑色区域伪影,同时保留抑制杂波的能力。因此,可以增强图像对比度,尤其是对于消声囊肿。

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