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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Performance evaluation of the spectral centroid downshift method for attenuation estimation
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Performance evaluation of the spectral centroid downshift method for attenuation estimation

机译:频谱质心下移法用于衰减估计的性能评估

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Estimation of frequency-dependent ultrasonic attenuation is an important aspect of tissue characterization. Along with other acoustic parameters studied in quantitative ultrasound, the attenuation coefficient can be used to differentiate normal and pathological tissue. The spectral centroid downshift (CDS) method is one the most common frequencydomain approaches applied to this problem. In this study, a statistical analysis of this method???s performance was carried out based on a parametric model of the signal power spectrum in the presence of electronic noise. The parametric model used for the power spectrum of received RF data assumes a Gaussian spectral profile for the transmit pulse, and incorporates effects of attenuation, windowing, and electronic noise. Spectral moments were calculated and used to estimate second-order centroid statistics. A theoretical expression for the variance of a maximum likelihood estimator of attenuation coefficient was derived in terms of the centroid statistics and other model parameters, such as transmit pulse center frequency and bandwidth, RF data window length, SNR, and number of regression points. Theoretically predicted estimation variances were compared with experimentally estimated variances on RF data sets from both computer-simulated and physical tissue-mimicking phantoms. Scan parameter ranges for this study were electronic SNR from 10 to 70 dB, transmit pulse standard deviation from 0.5 to 4.1 MHz, transmit pulse center frequency from 2 to 8 MHz, and data window length from 3 to 17 mm. Acceptable agreement was observed between theoretical predictions and experimentally estimated values with differences smaller than 0.05 dB/cm/MHz across the parameter ranges investigated. This model helps predict the best attenuation estimation variance achievable with the CDS method, in terms of said scan parameters.
机译:频率相关的超声衰减的估计是组织表征的重要方面。与定量超声中研究的其他声学参数一起,衰减系数可用于区分正常组织和病理组织。频谱质心下移(CDS)方法是应用于此问题的最常见的频域方法之一。在这项研究中,基于存在电子噪声的信号功率谱的参数模型,对该方法的性能进行了统计分析。用于接收的RF数据的功率谱的参数模型假设发射脉冲的高斯谱曲线,并包含衰减,开窗和电子噪声的影响。计算谱矩,并将其用于估算二阶质心统计量。根据质心统计和其他模型参数(例如发射脉冲中心频率和带宽,RF数据窗口长度,SNR和回归点数),得出了衰减系数的最大似然估计器的方差的理论表达式。将理论上预测的估计方差与计算机模拟和物理组织模拟体模在RF数据集上的实验估计方差进行比较。这项研究的扫描参数范围是:电子SNR为10至70 dB,发送脉冲标准偏差为0.5至4.1 MHz,发送脉冲中心频率为2至8 MHz,数据窗口长度为3至17 mm。在所研究的参数范围内,理论预测值与实验估计值之间的差异小于0.05 dB / cm / MHz,这是可接受的。根据所述扫描参数,该模型有助于预测用CDS方法可获得的最佳衰减估计方差。

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