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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Erratum: Sources of image degradation in fundamental and harmonic ultrasound imaging: a nonlinear, full-wave, simulation study
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Erratum: Sources of image degradation in fundamental and harmonic ultrasound imaging: a nonlinear, full-wave, simulation study

机译:勘误:基础和谐波超声成像中图像退化的来源:非线性,全波,仿真研究

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摘要

A full-wave equation that describes nonlinear propagation in a heterogeneous attenuating medium is solved numerically with finite differences in the time domain. This numerical method is used to simulate propagation of a diagnostic ultrasound pulse through a measured representation of the human abdomen with heterogeneities in speed of sound, attenuation, density, and nonlinearity. Conventional delay-and-sum beamforming is used to generate point spread functions (PSFs) that display the effects of these heterogeneities. For the particular imaging configuration that is modeled, these PSFs reveal that the primary source of degradation in fundamental imaging is due to reverberation from near-field structures. Compared with fundamental imaging, reverberation clutter in harmonic imaging is 27.1 dB lower. Simulated tissue with uniform velocity but unchanged impedance characteristics indicates that for harmonic imaging, the primary source of degradation is phase aberration.
机译:一个描述在非均质衰减介质中的非线性传播的全波方程,在时域中具有有限的差异,但数值求解。此数值方法用于通过声音的速度,衰减,密度和非线性的异质性,通过测量的人体腹部模拟超声诊断脉冲的传播。传统的延迟和求和波束形成用于生成点扩展函数(PSF),这些函数显示这些异质性的影响。对于建模的特定成像配置,这些PSF揭示出基本成像质量下降的主要原因是由于近场结构产生的混响。与基本成像相比,谐波成像中的混响杂波降低了27.1 dB。具有均匀速度但阻抗特性不变的模拟组织表明,对于谐波成像,退化的主要来源是相差。

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