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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Absolute backscatter coefficient over a wide range of frequencies in a tissue-mimicking phantom containing two populations of scatterers
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Absolute backscatter coefficient over a wide range of frequencies in a tissue-mimicking phantom containing two populations of scatterers

机译:包含两个散射体的模仿组织模型中的幻像在较大频率范围内的绝对反向散射系数

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摘要

The acquisition and interpretation of in vivo ultrasonic measurements in tissue encounter problems associated with limited access to the region of interest, intermixed scattering structures with different characteristic dimensions, and system-dependent effects. This work addresses these problems by adapting and testing a technique for measuring the absolute attenuation and the absolute backscatter coefficient (effective backscatter cross section per unit volume of material), as a function of frequency, in a single-transducer backscatter configuration. The frequency-dependent attenuation and backscatter coefficients of a tissue-mimicking gelatin phantom containing a random distribution of two populations of scatterers were measured, Three transducers with different center frequencies and focusing characteristics were used in order to verify that system-dependent effects were removed by the technique and to investigate the change in the measured parameters across a broad range of frequencies (2 to 60 MHz). A spherical autocorrelation model was applied to measurements of the backscatter coefficient in order to estimate the size of scatterers. Measurements demonstrate that the backscatter and attenuation properties of a mixture of two distinct intermixed scatterer-size populations change as a function of the frequency range across which the model is applied. Comparison of both the magnitude and the frequency dependence of the experimental results with the theoretical prediction of the backscatter coefficient showed good agreement.
机译:组织中体内超声测量的采集和解释会遇到以下问题:与目标区域的访问受限,具有不同特征尺寸的混合散射结构以及与系统有关的效果。这项工作通过适应和测试一种在单换能器反向散射配置中测量绝对衰减和绝对反向散射系数(单位体积材料的有效反向散射横截面)随频率变化的技术来解决这些问题。测量了包含两个散射体随机分布的模仿组织的明胶体模的频率相关衰减和反向散射系数,使用了三个具有不同中心频率和聚焦特性的换能器,以验证通过消除了系统相关的影响这项技术,并研究在广泛的频率范围(2至60 MHz)中测量参数的变化。为了估计散射体的大小,将球面自相关模型应用于后向散射系数的测量。测量表明,两个不同的混合散射体大小总体的混合物的反向散射和衰减特性随应用模型的频率范围而变化。实验结果的幅度和频率依赖性与后向散射系数的理论预测的比较显示出很好的一致性。

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