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评估背散射强度变化对超声衰减估计的影响。

Evaluation of the impact of backscatter intensity variations on ultrasound attenuation estimation.

机构信息

Department of Medical Physics, The University of Wisconsin-Madison, Madison, Wisconsin 53705, USA.

出版信息

Med Phys. 2013 Aug;40(8):082904. doi: 10.1118/1.4816305.

Abstract

PURPOSE

Quantitative ultrasound based approaches such as attenuation slope estimation can be used to determine underlying tissue properties and eventually used as a supplemental diagnostic technique to B-mode imaging. The authors investigate the impact of backscatter intensity and frequency dependence variations on the attenuation slope estimation accuracy.

METHODS

The authors compare three frequency domain based attenuation slope estimation algorithms, namely, a spectral difference method, the reference phantom method, and two spectral shift methods: a hybrid method and centroid downshift method. Both the reference phantom and hybrid method use a tissue-mimicking phantom with well-defined acoustic properties to reduce system dependencies and diffraction effects. The normalized power spectral ratio obtained is then filtered by a Gaussian filter centered at the transmit center frequency in the hybrid method. A spectral shift method is then used to estimate the attenuation coefficient from the normalized and filtered spectrum. The centroid downshift method utilizes the shift in power spectrum toward lower frequencies with depth. Numerical phantoms that incorporate variations in the backscatter intensity from -3 to 3 dB, by varying the scatterer number density and variations in the scatterer diameters ranging from 10 to 100 μm are simulated. Experimental tissue mimicking phantoms with three different scatterer diameter ranges (5-40, 75-90, and 125-150 μm) are also used to evaluate the accuracy of the estimation methods.

RESULTS

The reference phantom method provided accurate results when the acoustical properties of the reference and the sample are well matched. Underestimation occurs when the reference phantom possessed a higher sound speed than the sample, and overestimation occurs when the reference phantom had a lower sound speed than the sample. The centroid downshift method depends significantly on the bandwidth of the power spectrum, which in turn depends on the frequency dependence of the backscattering. The hybrid method was the least susceptible to changes in the sample's acoustic properties and provided the lowest standard deviation in the numerical simulations and experimental evaluations.

CONCLUSIONS

No significant variations in the estimation accuracy of the attenuation coefficient were observed with an increase in the scatterer number density in the simulated numerical phantoms for the three methods. Changes in the scatterer diameters, which result in different frequency dependence of backscatter, do not significantly affect attenuation slope estimation with the reference phantom and hybrid approaches. The centroid method is sensitive to variations in the scatterer diameter due to the frequency shift introduced in the power spectrum.

摘要

目的

基于定量超声的方法,如衰减斜率估计,可以用来确定组织的内在特性,并最终作为 B 型超声成像的补充诊断技术。本研究旨在探讨背散射强度和频率依赖性变化对衰减斜率估计精度的影响。

方法

本研究比较了三种基于频域的衰减斜率估计算法,即谱差分法、参考体模法和两种谱移法:混合法和质心法频移法。参考体模和混合法均使用具有明确声学特性的组织模拟体模来减少系统依赖性和衍射效应。混合法在获得归一化功率谱比后,在中心频率处使用高斯滤波器进行滤波。然后,使用谱移法从归一化和滤波后的谱中估计衰减系数。质心法频移法则利用随深度向低频移动的功率谱位移。通过改变散射体的数量密度和散射体直径(10-100μm),模拟了背散射强度从-3dB 到 3dB 的变化。还使用了三种不同散射体直径范围(5-40μm、75-90μm 和 125-150μm)的实验组织模拟体模来评估估计方法的准确性。

结果

参考体模法在参考体和样本的声学特性匹配良好时能提供准确的结果。当参考体模的声速高于样本时会出现低估,当参考体模的声速低于样本时会出现高估。质心法频移法对功率谱带宽有很大的依赖性,而带宽又取决于背散射的频率依赖性。混合法受样本声学特性变化的影响最小,在数值模拟和实验评估中提供的标准偏差最小。

结论

在三种方法中,随着模拟数值体模中散射体数量密度的增加,衰减系数的估计精度没有明显变化。散射体直径的变化导致背散射的频率依赖性不同,但对参考体模和混合法的衰减斜率估计没有显著影响。由于功率谱中引入的频移,质心法对散射体直径的变化很敏感。

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