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A new method for measuring the yield stress in thin layers of sedimenting blood.

机译:一种测量血液薄层屈服应力的新方法。

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摘要

A new method is presented to describe the low shear rate behavior of blood. We observed the response of a thin layer of sedimenting blood to a graded shear stress in a wedge-shaped chamber. The method allows quantitation of the degree of phase separation between red cells and plasma, and extracts the yield stress of the cell phase as a function of hematocrit. Our studies showed that the behavior of normal human blood underwent a transition from a solid-like gel to a Casson fluid. This transition began at the Casson predicted yield stress. The viscoelastic properties of blood were examined at shear stresses below the yield stress. The measured Young's elastic moduli were in good agreement with published data. The yield stress of blood showed a linear dependence on hematocrit up to 60%, and increased more rapidly at higher hematocrit.
机译:提出了一种描述血液低剪切速率行为的新方法。我们观察到在楔形腔室中,一层薄薄的沉积血液对梯度切应力的响应。该方法可以定量分析红细胞和血浆之间的相分离程度,并提取与血细胞比容有关的细胞相屈服应力。我们的研究表明,正常人血液的行为经历了从固体状凝胶到卡森液的转变。这种转变始于Casson预测的屈服应力。在低于屈服应力的剪切应力下检查了血液的粘弹性质。测得的杨氏弹性模量与已发表的数据非常吻合。血液的屈服应力显示对血细胞比容的线性依赖性高达60%,并且在较高的血细胞比容下增长更快。

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