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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Rheology over five orders of magnitude in model hydrogels: agreement between strain-controlled rheometry, transient elastography, and supersonic shear wave imaging
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Rheology over five orders of magnitude in model hydrogels: agreement between strain-controlled rheometry, transient elastography, and supersonic shear wave imaging

机译:模型水凝胶的流变超过五个数量级:应变控制流变,瞬态弹性成像和超声剪切波成像之间的一致性

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Shear wave elastography helps physicians to characterize pathologies by assessing biomechanical properties of soft tissues. Compared with classical rheology, these techniques allow the quantification of the mechanical properties of tissues in the frequency range of hundreds of hertz. In this paper, ultrasound elastographic measurements and classical rheology are compared over a frequency range spanning five orders of magnitude [0.01 to 1200 Hz] to characterize model gels at multiple scales. Hybrid hydrogels were specially synthesized to get a fine tuning of the material dissipative response. Straincontrolled rheology (SCR) experiments were performed to get the elastic moduli G" and loss moduli G" from 0.01 Hz to 10 Hz and were confirmed by tensile tests. Transient elastography (TE from 50 to 400 Hz) and supersonic shear imaging (SSI from 200 to 1200 Hz) were used to characterize polymers at high frequency. Two different hydrogels were tested in the ultrasound setup with different concentration of scatterers. From low-frequency measurements, elastic moduli were extrapolated at high frequency and a very good correlation was obtained between SCR and TE and between SCR and SSI (r = 0.92 and r = 0.95, respectively). This paper demonstrates the capability of shear wave elastography to accurately image rheological properties of soft tissues, to differentiate soft elastic domains from viscous ones. It also gives new insights into soft material science because it provides a rheological tool in a high-frequency domain complementary to conventional rheometry.
机译:剪切波弹性成像可以帮助医生通过评估软组织的生物力学特性来表征病理。与经典流变技术相比,这些技术可以量化数百赫兹频率范围内组织的机械性能。在本文中,在5个数量级[0.01到1200 Hz]的频率范围内比较了超声弹性成像测量和经典流变学,以表征多种尺度的模型凝胶。杂化水凝胶经过特殊合成,可以很好地调节材料的耗散响应。进行应变控制的流变学(SCR)实验,以得到从0.01 Hz到10 Hz的弹性模量G“和损耗模量G”,并通过拉伸试验证实。瞬态弹性成像(TE从50到400 Hz)和超声剪切成像(SSI从200到1200 Hz)用于表征聚合物的高频特性。在超声设置中使用不同浓度的散射体测试了两种不同的水凝胶。通过低频测量,可以在高频处外推弹性模量,并且在SCR和TE之间以及SCR和SSI之间获得了很好的相关性(分别为r = 0.92和r = 0.95)。本文展示了剪切波弹性成像技术能够准确地成像软组织的流变特性,区分软弹性域和粘性域的能力。它还为软材料科学提供了新的见解,因为它在高频领域提供了与传统流变仪互补的流变学工具。

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