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Linear System Models for Ultrasonic Imaging: Intensity Signal Statistics

机译:超声成像的线性系统模型:强度信号统计

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摘要

Despite a great deal of work characterizing the statistical properties of radio frequency backscattered ultrasound signals, less is known about the statistical properties of demodulated intensity signals. Analysis of intensity is made more difficult by a strong nonlinearity that arises in the process of demodulation. This limits our ability to characterize the spatial resolution and noise properties of B-mode ultrasound images. In this paper, we generalize earlier results on two-point intensity covariance using a multivariate systems approach. We derive the mean and autocovariance function of the intensity signal under Gaussian assumptions on both the object scattering function and acquisition noise, and with the assumption of a locally shift-invariant pulse-echo system function. We investigate the limiting cases of point statistics and a uniform scattering field with a stationary distribution. Results from validation studies using simulation and data from a real system applied to a uniform scattering phantom are presented. In the simulation studies, we find errors less than 10% between the theoretical mean and variance, and sample estimates of these quantities. Prediction of the intensity power spectrum (PS) in the real system exhibits good qualitative agreement (errors less than 3.5 dB for frequencies between 0.1 and 10 cyc/mm, but with somewhat higher error outside this range that may be due to the use of a window in the PS estimation procedure). We also replicate the common finding that the intensity mean is equal to its standard deviation (i.e., signal-to-noise ratio = 1) for fully developed speckle. We show how the derived statistical properties can be used to characterize the quality of an ultrasound linear array for low-contrast patterns using generalized noise-equivalent quanta directly on the intensity signal.
机译:尽管对射频反向散射超声信号的统计特性进行了大量工作,但对解调强度信号的统计特性知之甚少。解调过程中会出现强烈的非线性,从而使强度分析变得更加困难。这限制了我们表征B模式超声图像的空间分辨率和噪声特性的能力。在本文中,我们使用多元系统方法对两点强度协方差的早期结果进行了概括。我们在对象散射函数和采集噪声的高斯假设下,并在局部位移不变的脉冲回波系统函数的假设下,得出强度信号的均值和自协方差函数。我们研究点统计的极限情况和具有平稳分布的均匀散射场。给出了使用模拟进行验证研究的结果以及应用于均匀散射体模的真实系统的数据。在模拟研究中,我们发现理论均值和方差之间的误差小于10%,并且对这些数量进行了样本估计。实际系统中的强度功率谱(PS)的预测显示出良好的定性一致性(0.1至10 cyc / mm之间的频率误差小于3.5 dB,但在此范围之外的误差可能更高,这可能是由于使用了PS估算程序中的窗口)。我们还重复了一个常见的发现,即对于完全发达的斑点,强度平均值等于其标准偏差(即信噪比= 1)。我们展示了如何直接使用强度等效信号上的广义噪声等效量子,将导出的统计特性用于表征低对比度模式的超声线性阵列的质量。

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