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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Spatial coherence of the nonlinearly generated second harmonic portion of backscatter for a clinical imaging system
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Spatial coherence of the nonlinearly generated second harmonic portion of backscatter for a clinical imaging system

机译:临床成像系统中非线性生成的反向散射二次谐波部分的空间相干性

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Correlation-based approaches to phase aberration correction rely on the spatial coherence of backscattered signals. The spatial coherence of backscatter from speckle-producing targets is predicted by the auto correlation of the transmit apodization (Van Cittert-Zernike theorem). Work by others indicates that the second harmonic beam has a wider mainlobe with lower sidelobes than a beam transmitted at 2f. The purpose of this paper is to demonstrate that the spatial coherence of backscatter for the second harmonic is different from that of the fundamental, as would be anticipated from applying the Van Cittert-Zernike theorem to the reported measurements of the second harmonic field. Another objective of this work is to introduce the concept of the effective apodization and to verify that the effective apodization of the second harmonic is narrower than the transmit apodization. The spatial coherence of backscatter was measured using three clinical arrays with a modified clinical imaging system. The spatial coherence results were verified using a pseudo-array scan in a transverse plane of the transmitted field with a hydrophone. An effective apodization was determined by backpropagating these values using a linear angular spectrum approach. The spatial coherence for the harmonic portion of backscatter differed systematically and significantly from the auto correlation of the transmit apodization.
机译:基于相关性的相位像差校正方法依赖于反向散射信号的空间相干性。产生斑点目标的反向散射的空间相干性是通过发射变迹的自动相关性来预测的(Van Cittert-Zernike定理)。其他人的工作表明,与在2f处透射的光束相比,二次谐波光束的主瓣具有较低的旁瓣。本文的目的是证明二次谐波的反向散射空间相干性与基波的空间相干性不同,这是将Van Cittert-Zernike定理应用到所报告的二次谐波场的测量中所预期的。这项工作的另一个目的是介绍有效切趾的概念,并验证二次谐波的有效切趾比发射切趾窄。使用具有改进的临床成像系统的三个临床阵列测量反向散射的空间相干性。使用水听器在发射场的横向平面中使用伪阵列扫描来验证空间相干结果。通过使用线性角谱方法反向传播这些值来确定有效的切趾。反向散射谐波部分的空间相干性与发射变迹的自相关具有系统性且显着不同。

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