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首页> 外文期刊>Ultrasound in Medicine and Biology >Correlation between classical rheometry and supersonic shear wave imaging in blood clots
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Correlation between classical rheometry and supersonic shear wave imaging in blood clots

机译:血液流变中经典流变学与超声切变波成像的相关性

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The assessment of coagulating blood elasticity has gained importance as a result of several studies that have correlated it to cardiovascular pathologic conditions. In this study we use supersonic shear wave imaging (SSI) to measure viscoelastic properties of blood clots. At the same time, classical rheometry experiments were carried out on the same blood samples taken within the first few seconds of coagulation. Using SSI, phase velocities of the shear wave indicated increasing dispersion with time. In all cases, the frequency bandwidth of propagating shear waves changed from 20-50Hz at the first few min of coagulation to around 300Hz toward the end of experiments. Using the values of G' and G″ from the rheometry studies, the theoretical shear wave velocities were calculated and correlated with SSI measurements. Results of the two techniques were in very good agreement, confirming that SSI provides accurate measurements of viscoelastic properties as corroborated by conventional rheometric measurements.
机译:多项研究将凝血弹性与心血管病理状况相关联,因此对凝血弹性的评估变得越来越重要。在这项研究中,我们使用超声剪切波成像(SSI)来测量血凝块的粘弹性。同时,在凝固的最初几秒钟内对相同的血液样本进行了经典的流变学实验。使用SSI,剪切波的相速度表明随着时间的流逝色散增加。在所有情况下,传播的剪切波的频率带宽从凝结的最初几分钟的20-50Hz变为实验结束时的300Hz左右。使用流变学研究中的G'和G''值,计算了理论剪切波速度,并将其与SSI测量值相关联。两种技术的结果非常吻合,这证实了SSI可以提供粘弹性的精确测量值,而传统的流变测量法则可以证实这一点。

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