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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Intervening attenuation affects first-order statistical properties of ultrasound echo signals
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Intervening attenuation affects first-order statistical properties of ultrasound echo signals

机译:中间衰减影响超声回波信号的一阶统计特性

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摘要

Previous studies show that first-order statistical properties of ultrasound echo signals are related to the effective number of scatterers in the "resolution cell" of a pulse-echo ultrasound system. When the effective number of scatterers is large (/spl sim/10 or more) this results in echo signals whose amplitude follows a Rayleigh distribution, with the RF echo signal obeying Gaussian statistics; deviation from Rayleigh or Gaussian statistics yields information on scatterer number densities. In this paper, the influence of the medium's attenuation on non-Gaussian properties of the echo signal is considered. Preferential attenuation of higher frequency components of a pulsed ultrasound beam effectively broadens the beam and increases the resolution cell size. Thus, the resultant non-Gaussian parameter for broad bandwidth excitation of the transducer depends not only on the scatterer number density but also on the attenuation in the medium. These effects can be reduced or eliminated by using narrow-band experiments.
机译:先前的研究表明,超声回波信号的一阶统计特性与脉冲回波超声系统“分辨池”中散射体的有效数量有关。当散射体的有效数量较大时(/ spl sim / 10或更多),这将导致其回波信号的幅度遵循瑞利分布,而RF回波信号则服从高斯统计。与瑞利或高斯统计的偏差会产生有关散射体数量密度的信息。在本文中,考虑了介质的衰减对回波信号的非高斯性质的影响。脉冲超声束的高频分量的优先衰减会有效地加宽波束,并增加分辨率单元的大小。因此,用于换能器的宽带宽激励的合成非高斯参数不仅取决于散射体的密度,还取决于介质的衰减。通过使用窄带实验可以减少或消除这些影响。

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