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稳态剪切与振荡剪切的叠加及其对人体血液和类血模型流体粘弹性的影响。

The superposition of steady on oscillatory shear and its effect on the viscoelasticity of human blood and a blood-like model fluid.

作者信息

Vlastos G, Lerche D, Koch B

机构信息

Institute for Medical physics and Biophysics, University Hospital Charité, Humboldt University, Berlin, Germany.

出版信息

Biorheology. 1997 Jan-Feb;34(1):19-36. doi: 10.1016/S0006-355X(97)00002-4.

Abstract

To understand the pulsatility of human blood flow in vivo, it is necessary to separately investigate (1) steady shear and oscillatory flow, and (2) the superposition of steady shear flow on oscillatory flow performed under in vitro conditions. In this study a variable steady shear rate was superimposed in parallel on oscillatory shear at a constant frequency (0.5 Hz) for human blood (45% hematocrit), and an aqueous polyacrylamide polymer solution (AP 30E, concentration 300 ppm). The effect of superposition of the above two shear flows on the viscoelasticity of blood was more pronounced for the elastic (eta") than for the viscous (eta') component of viscoelasticity. With increasing superimposed shear rate, both eta' and eta" decreased, especially at the low shear region. This behavior can be explained by the viscoelastic properties of blood and the phenomenon of blood aggregation and disaggregation. Quantitatively, the dependence of the viscous component of complex viscosity on superimposed shear for both blood and polymer solution is described by a modified Carreau equation. The elastic component of complex viscosity decreased exponentially with increasing superimposed shear, and it is described by an exponential model.

摘要

为了理解体内人体血流的脉动性,有必要分别研究:(1)稳定剪切流和振荡流,以及(2)在体外条件下进行的稳定剪切流叠加在振荡流上的情况。在本研究中,对于人体血液(血细胞比容为45%)和聚丙烯酰胺水溶液(AP 30E,浓度为300 ppm),以可变的稳定剪切速率平行叠加在频率恒定(0.5 Hz)的振荡剪切上。上述两种剪切流叠加对血液粘弹性的影响,对于粘弹性的弹性分量(η″)比对粘性分量(η′)更为显著。随着叠加剪切速率的增加,η′和η″均降低,尤其是在低剪切区域。这种行为可以通过血液的粘弹性特性以及血液聚集和解聚现象来解释。定量地说,血液和聚合物溶液的复数粘度粘性分量对叠加剪切的依赖性由修正的Carreau方程描述。复数粘度的弹性分量随着叠加剪切的增加呈指数下降,并由指数模型描述。

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