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Cross validation of Supersonic Shear Wave Imaging (SSI) with classical rheometry during blood coagulation over a very large bandwidth

机译:在非常大的带宽上进行凝血期间,超声速剪切波成像(SSI)与经典流变仪的交叉验证

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Deep venous thrombosis (DVT) affects millions of people worldwide. Its diagnosis and treatment depends on clot's age which is closely related to its viscoelastic properties. In this study we use Supersonic Shear Wave Imaging (SSI) and classical rheometry to measure the evolution of the viscoelastic properties of blood clots. Using SSI and shear wave spectroscopy (SWS), dispersion curves were obtained between 50 and 300 Hz every minute for 2 hours during coagulation. Using the values for G' and G" from the rheological studies, the theoretical shear wave speeds were calculated for frequencies between 0.25 and 30 Hz at the same time points. Maxwell, Voigt and Zener models were fitted to the dispersion data obtained by combining both techniques. Shear wave speed showed a marked increase with time of coagulation for all the frequencies, from around 0.5 m/s at the beginning of coagulation to 0.9 after 2 hours. The Zener model (μ1, μ2, η) showed the best fit on the data out of the 3 models. Even though the Maxwell (μM, μη) and Voigt (μV, ηV) models did a good job at higher frequencies (70 Hz and up), both models failed to characterize the lower frequencies. Combination of SSI and classical rheometry allowed the characterization of the viscoelastic properties of blood clots in a very large frequency range between 0.25 Hz and 300 Hz. The two techniques showed very good agreement suggesting that SSI could be used to study the rheological properties of soft solids.
机译:深静脉血栓形成(DVT)影响全球数百万人。它的诊断和治疗取决于血块的年龄,血块的年龄与其粘弹性密切相关。在这项研究中,我们使用超音速剪切波成像(SSI)和经典流变仪来测量血凝块的粘弹性特性的演变。使用SSI和剪切波谱(SWS),在凝固过程中每2分钟在50和300 Hz之间获得分散曲线。使用流变学研究中的G'和G“值,在相同时间点计算0.25和30 Hz之间频率的理论剪切波速度。将Maxwell,Voigt和Zener模型拟合到通过合并两者获得的色散数据在所有频率下,剪切波速度均显示出随凝结时间的显着增加,从凝结开始时的约0.5 m / s到2小时后为0.9。齐纳模型(μ 1 ,μ 2 ,η)在这三个模型中的数据上显示出最佳拟合,即使Maxwell(μ M ,μη)和Voigt(μ V ,η V )模型在较高的频率(70 Hz及以上)下表现出色,但两个模型都无法表征较低的频率。经典流变仪可以在0.25 Hz至300 Hz的很大频率范围内表征血凝块的粘弹性,这两种技术显示出很好的一致性,表明hat SSI可用于研究软固体的流变特性。

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