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Phenomenological characterization of blood's intermediate shear rate: a new concept for hemorheology

机译:血液中间剪切速率的现象学表征:血液流变学的新概念

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摘要

The phenomena of aggregation, breakdown, and disaggregation of the rouleaux of red blood cells (RBCs) in addition to deformability affect the human blood viscosity at different shear rates. In this study, the intermediate shear rate is introduced and defined when the effect of aggregation on the change of blood viscosity is diminished; and afterwards, the alteration in the blood viscosity is dominantly affected by the deformation of RBCs. With this respect, modeling the effective parameters on the blood shear-thinning behavior including hematocrit and plasma viscosity was performed for the two different shear regions discriminated by the proposed intermediate shear rates. The presented rheological model reflects a phenomenological approach to assess the human blood viscosity with an average error of +/- 5 compared to experimental data for hematocrits between 0.299 and 0.702, subjected to various shear rates from 0.2 to 680 1/s. The temperature changes as well as biochemical effects on whole blood viscosity are characterized by the introduced plasma viscosity-dependent model. The presented comprehensive model could be used for better understanding of blood flow hemodynamics and analyzing the shear dependence of aggregation and deformability behaviors of RBCs.
机译:红细胞(RBCs)的聚集、分解和分解现象以及变形性会影响不同剪切速率下人体血液粘度。在这项研究中,当聚集对血液粘度变化的影响减弱时,引入并定义了中间剪切速率;之后,血液粘度的改变主要受红细胞变形的影响。在这方面,对通过提出的中间剪切速率区分的两个不同剪切区域进行了血液剪切稀化行为的有效参数建模,包括血细胞比容和血浆粘度。所提出的流变学模型反映了一种现象学方法,用于评估人体血液粘度,与 0.299 至 0.702 之间的血细胞比容的实验数据相比,平均误差为 +/- 5%,受到 0.2 至 680 1/s 的各种剪切速率的影响。通过引入的血浆黏度依赖性模型表征了温度变化及其对全血黏度的生化影响。所提出的综合模型可用于更好地理解红细胞的血流血流动力学,并分析红细胞聚集和变形行为的剪切依赖性。

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