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Shear viscosity and nonlinear behaviour of whole blood under large amplitude oscillatory shear

机译:大振幅振荡剪切下全血的剪切粘度和非线性行为

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摘要

We investigated experimentally the rheological behavior of whole human blood subjected to large amplitude oscillatory shear under strain control to assess its nonlinear viscoelastic response. In these rheological tests, the shear stress response presented higher harmonic contributions, revealing the nonlinear behavior of human blood that is associated with changes in its internal microstructure. For the rheological conditions investigated, intra-cycle strain-stiffening and intra-cycle shear-thinning behavior of the human blood samples were observed and quantified based on the Lissajous–Bowditch plots. The results demonstrated that the dissipative nature of whole blood is more intense than its elastic component. We also assessed the effect of adding EDTA anticoagulant on the shear viscosity of whole blood subjected to steady shear flow. We found that the use of anticoagulant in appropriate concentrations did not influence the shear viscosity and that blood samples without anticoagulant preserved their rheological characteristics approximately for up to 8 minutes before coagulation became significant.
机译:我们实验研究了全血在应变控制下经受大振幅振荡剪切的流变行为,以评估其非线性粘弹性响应。在这些流变测试中,剪切应力响应表现出更高的谐波贡献,揭示了人类血液的非线性行为,这与其内部微观结构的变化有关。在所研究的流变条件下,观察了人体血液样品的循环内应变强化和循环内剪切稀化行为,并根据Lissajous-Bowditch图进行了量化。结果表明,全血的耗散性比其弹性成分更强烈。我们还评估了添加EDTA抗凝剂对经过稳定剪切流的全血剪切粘度的影响。我们发现以适当的浓度使用抗凝剂不会影响剪切粘度,而没有抗凝剂的血液样品在凝结变得明显之前最多可以保留长达8分钟的流变特性。

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