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首页> 外文期刊>Ultrasonic Imaging: An International Journal >Lower Bound on Estimation Variance of the Ultrasonic Attenuation Coefficient Using the Spectral-Difference Reference-phantom Method
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Lower Bound on Estimation Variance of the Ultrasonic Attenuation Coefficient Using the Spectral-Difference Reference-phantom Method

机译:利用光谱差异参考法测定超声衰减系数的估计变化下限

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Ultrasonic attenuation is one of the primary parameters of interest in Quantitative Ultrasound (QUS). Non-invasive monitoring of tissue attenuation can provide valuable diagnostic and prognostic information to the physician. The Reference Phantom Method (RPM) was introduced as a way of mitigating some of the system-related effects and biases to facilitate clinical QUS applications. In this paper, under the assumption of diffuse scattering, a probabilistic model of the backscattered signal spectrum is used to derive a theoretical lower bound on the estimation variance of the attenuation coefficient using the Spectral-Difference RPM. The theoretical lower bound is compared to simulated and experimental attenuation estimation statistics in tissue-mimicking (TM) phantoms. Estimation standard deviation (STD) of the sample attenuation in a region of interest (ROI) of the TM phantom is measured for various combinations of processing parameters, including Radio-Frequency (RF) data block length (i. e., window length) from 3 to 17 mm, RF data block width from 10 to 100 A-lines, and number of RF data blocks per attenuation estimation ROI from 3 to 10. In addition to the Spectral-Difference RPM, local attenuation estimation for simulated and experimental data sets was also performed using a modified implementation of the Spectral Fit Method (SFM). Estimation statistics of the SFM are compared to theoretical variance predictions from the literature. 1 Measured STD curves are observed to lie above the theoretical lower bound curves, thus experimentally verifying the validity of the derived bounds. This theoretical framework benefits tissue characterization efforts by isolating processing parameter ranges that could provide required precision levels in estimation of the ultrasonic attenuation coefficient using Spectral Difference methods.
机译:超声衰减是定量超声(QUS)的兴趣的主要参数之一。非侵入性监测组织衰减可以向医生提供有价值的诊断和预后信息。引入参考幻像方法(RPM)作为减轻一些有关的系统相关效果和偏差的方式,以促进临床QUS应用。在本文中,在漫射散射的假设下,使用光谱差异RPM,使用反向散射信号频谱的概率模型来导出衰减系数的估计方差的理论下限。将理论下限与组织模拟(TM)幻像的模拟和实验衰减估计进行比较。测量TM幻像区域的感兴趣区域(ROI)中的样本衰减的标准偏差(ROI),用于处理参数的各种组合,包括从3到3的射频(RF)数据块长度(即窗口长度) 17 mm,RF数据块宽度为10到100行,以及每个衰减估计ROI的RF数据块的数量除了光谱差异转速之外,还为模拟和实验数据集的本地衰减估计使用频谱拟合方法(SFM)的修改实现执行。将SFM的估计统计数据与文献中的理论方差预测进行了比较。 1测量的STD曲线被观察到位于理论下限曲线上方,从而实验验证衍生界限的有效性。该理论框架通过使用光谱差差方法隔离在超声衰减系数估计中可以提供所需精度水平的处理参数范围来利益组织表征工作。

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