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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >An in vitro study of the effects of Doppler angle, fibrinogen, and hematocrit on ultrasonic Doppler power
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An in vitro study of the effects of Doppler angle, fibrinogen, and hematocrit on ultrasonic Doppler power

机译:多普勒角,纤维蛋白原和血细胞比容对超声多普勒功率影响的体外研究

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摘要

For a better understanding of the relationship between the Doppler power and erythrocyte aggregation of whole blood under steady flow in a conduit, the effects of Doppler angle, fibrinogen concentration, and hematocrit were investigated in a mock flow loop. The results show that, at a mean shear rate of 102 s/sup -1/, there was minimal angular dependence; but at a mean shear rate of 52 s/sup -1/, there was a weak angular dependence as the Doppler angle was varied from 40/spl deg/ to 70/spl deg/. These results suggest that there was, perhaps, no or little alignment of the red cell aggregates at high shear rates. The Doppler power was found to increase nonlinearly as the fibrinogen concentration was increased; and the effect of other plasma proteins on red cell aggregation may not be negligible, although fibrinogen is the dominant factor. The results show that the variation of the Doppler power over the lumen is hematocrit dependent for hematocrits below 26%.
机译:为了更好地了解在管道中稳定流动下多普勒功率与全血红细胞聚集之间的关系,我们在模拟流动回路中研究了多普勒角度,纤维蛋白原浓度和血细胞比容的影响。结果表明,在平均剪切速率为102 s / sup -1 /时,角度依赖性最小;但在52 s / sup -1 /的平均剪切速率下,由于多普勒角从40 / spl deg /变为70 / spl deg /,所以角度依赖性较弱。这些结果表明,在高剪切速率下,红细胞聚集体可能没有对齐或几乎没有对齐。随着血纤蛋白原浓度的增加,多普勒能量呈非线性增加。尽管血纤蛋白原是主要因素,但其他血浆蛋白对红细胞聚集的影响可能微不足道。结果表明,当血细胞比容低于26%时,腔内多普勒能量的变化与血细胞比容有关。

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