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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Rheological assessment of a polymeric spherical structure using a three-dimensional shear wave scattering model in dynamic spectroscopy elastography
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Rheological assessment of a polymeric spherical structure using a three-dimensional shear wave scattering model in dynamic spectroscopy elastography

机译:动态三维弹性成像中使用三维剪切波散射模型的聚合物球形结构流变学评估

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摘要

With the purpose of assessing localized rheological behavior of pathological tissues using ultrasound dynamic elastography, an analytical shear wave scattering model was used in an inverse problem framework. The proposed method was adopted to estimate the complex shear modulus of viscoelastic spheres from 200 to 450 Hz. The inverse problem was formulated and solved in the frequency domain, allowing assessment of the complex viscoelastic shear modulus at discrete frequencies. A representative rheological model of the spherical obstacle was determined by comparing storage and loss modulus behaviors with Kelvin??Voigt, Maxwell, Zener, and Jeffrey models. The proposed inversion method was validated by using an external vibrating source and acoustic radiation force. The estimation of viscoelastic properties of three-dimensional spheres made softer or harder than surrounding tissues did not require a priori rheological assumptions. The proposed method is intended to be applied in the context of breast cancer imaging.
机译:为了使用超声动态弹性成像技术评估病理组织的局部流变行为,在反问题框架中使用了解析切波散射模型。该方法被用来估计200到450 Hz范围内的粘弹性球的复数剪切模量。反问题是在频域中制定和解决的,从而可以评估离散频率下的复杂粘弹性剪切模量。通过与Kelvin ?? Voigt,Maxwell,Zener和Jeffrey模型比较储能和损耗模量行为,确定了球形障碍物的代表性流变模型。通过使用外部振动源和声辐射力对所提出的反演方法进行了验证。对比周围组织更软或更硬的三维球的粘弹性的估计不需要先验的流变假设。所提出的方法旨在应用于乳腺癌成像中。

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