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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Spatial coherence of backscatter for the nonlinearly produced second harmonic for specific transmit apodizations
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Spatial coherence of backscatter for the nonlinearly produced second harmonic for specific transmit apodizations

机译:特定发射变迹的非线性产生的二次谐波的反向散射空间相干性

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To be successful, correlation-based, phase-aberration correction requires a high correlation among backscattered signals. For harmonic imaging, the spatial coherence of backscatter for the second harmonic component is different than the spatial coherence of backscatter for the fundamental component. The purpose of this work was to determine the effect of changing the transmit apodization on the spatial coherence of backscatter for the nonlinearly generated second harmonic. Our approach was to determine the effective apodizations for the fundamental and second harmonic using both experimental measurements and simulations. Two-dimensional measurements of the transverse cross sections of the finite-amplitude ultrasonic fields generated by rectangular and circular apertures were acquired with a hydrophone. Three different one-dimensional transmit apodization functions were investigated: uniform, Riesz, and trapezoidal. An effective apodization was obtained for each transmit apodization by backpropagating the values measured from within the transmit focal zone using a linear angular spectrum approach. Predictions of the spatial coherence of backscatter were obtained using the pulse-echo Van Cittert-Zernike theorem. In all cases the effective apodization at 2f was narrower than the transmit apodization. We demonstrate that certain transmit apodizations result in a greater spatial coherence of backscatter at the second harmonic than at the fundamental.
机译:为了获得成功,基于相关的相位像差校正需要反向散射信号之间的高度相关。对于谐波成像,二次谐波分量的反向散射空间相干性不同于基本分量的反向散射空间相干性。这项工作的目的是确定对于非线性产生的二次谐波,改变发射变迹对反向散射的空间相干性的影响。我们的方法是使用实​​验测量和模拟来确定基波和二次谐波的有效切趾。用水听器获得由矩形和圆形孔产生的有限振幅超声场的横截面的二维测量。研究了三种不同的一维透射变迹函数:均匀,Riesz和梯形。通过使用线性角谱方法从传输焦点区内测量的值反向传播,可以为每个传输变迹获得有效的变迹。使用脉冲回波Van Cittert-Zernike定理获得了反向散射的空间相干性预测。在所有情况下,在2f处的有效切趾比透射切趾窄。我们证明,某些发射变迹导致在二次谐波处比在基波处更大的反向散射空间相干性。

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