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Optimization of the algorithms for estimating the ultrasonic attenuation along the propagation path

机译:算法沿传播路径估算超声衰减的算法优化

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摘要

In this study, we perform statistical analysis on two methods used to estimate the total ultrasound attenuation along the propagation path from the surface of the transducer to a region of interest at a particular depth; namely, the spectral-fit method and the multiple-filter method. We derive mathematical equations for the bias and variance in the attenuation estimates as a function of region of interest (ROI) size, imaging system bandwidth, and number of independent Gaussian filters (for the multiple filter method). We use numerical simulations to validate the mathematical equations and compare the two algorithms. The results show that the variance in the total attenuation coefficient estimates obtained with the two methods are comparable, and that the estimates are unbiased. For the multiple filter method, the optimal number of Gaussian filters is two.
机译:在这项研究中,我们对两种方法进行统计分析,这两种方法用于估计沿着超声从换能器表面到特定深度的目标区域的传播路径的总超声衰减。即频谱拟合法和多重滤波器法。我们得出衰减估计中的偏差和方差的数学方程式,它是关注区域(ROI)大小,成像系统带宽和独立高斯滤波器数量的函数(对于多滤波器方法)。我们使用数值模拟来验证数学方程式并比较这两种算法。结果表明,用两种方法获得的总衰减系数估计值的方差是可比较的,并且估计值是无偏的。对于多重滤波器方法,高斯滤波器的最佳数量为两个。

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