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Numerical investigation of the frequency dependence of ultrasonic backscatter in trabecular bone

机译:超声波背散射在小梁骨中的频率依赖性的数值研究

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The goal of this study was to model the frequency-dependence of the ultrasonic backscatter coefficient in cancellous bone. A twofold theoretical approach has been adopted: the analytical theoretical model of Faran for spherical and cylindrical elastic scatterers, and the scattering model for weakly scattering medium in which the backscatter coefficient is related to the auto-correlation function of the propagating medium. The ultrasonic backscatter coefficient was measured in 19 bone specimens (human calcaneus) in the frequency range of 0.4-1.2 MHz. The auto-correlation function was computed from the 3D micro-architecture measured using synchrotron radiation microtomography. Good agreement was found between the frequency dependence of the experimental (f{sup}(3.38±0.31)) and autocorrelation modeled (f{sup}(3.48±0.26)) backscatter coefficients. The results based on Faran theory (cylindrical Faran model: f{sup}(2.89±006) and spherical Faran model: f{sup}(3.91±0.04)) show qualitative agreement with experimental data. The good prediction obtained by modeling the backscatter coefficient using the autocorrelation function of the medium opens interesting prospects for the investigation of the influence of bone micro-architecture on ultrasonic scattering.
机译:本研究的目标是模拟超声波背散系数在松质骨中的频率依赖性。采用双重理论方法:球形和圆柱形弹性散射仪法兰的分析理论模型,以及弱散射介质的散射模型,其中反向散射系数与传播介质的自相关函数有关。在频率范围为0.4-1.2MHz的频率范围内,在19个骨质标本(人calcaneus)中测量超声波反散频系数。从使用同步辐射微型术测量的3D微架构计算自动相关函数。实验(F {SUP}(3.38±0.31)的频率依赖性和自相关建模(F {SUP}(3.48±0.26))反向散射系数之间存在良好的一致性。基于法兰理论的结果(圆柱形Faran模型:F {Sup}(2.89±006)和球面法福利模型:F {SUP}(3.91±0.04))显示与实验数据的定性协议。通过使用介质的自相关函数建模反向散射系数来获得的良好预测开启了对骨微架构对超声波散射的影响的有趣前景。

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