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血细胞悬液的内在粘弹性:红细胞变形性的影响。

Intrinsic viscoelasticity of blood cell suspensions: effects of erythrocyte deformability.

作者信息

More R B, Thurston G B

机构信息

Department of Mechanical Engineering, University of Texas at Austin 78712.

出版信息

Biorheology. 1987;24(3):297-309. doi: 10.3233/bir-1987-24303.

Abstract

The intrinsic viscoelasticity of erythrocyte suspensions holds great potential for specifying the deformability of the individual, noninteracting cells in an oscillatory shear flow field. In order to extrapolate to zero cell concentration, the complex viscoelastic modulus was measured as a function of hematocrit using 2 Hertz oscillatory flow and a shear rate of 10/sec. This was done for both normal cells and cells with severely reduced deformability when hardened with glutaraldehyde. Suspension media were blood plasma, isotonic saline, and Dextran solutions. The real parts of the complex intrinsic visco-elasticities were obtained by an extrapolation using a regression fit to Huggins' equation. For normal cells in native plasma the values ranged from 1.7 to 2, increasing to the range 2.4 to 3.1 when the plasma was diluted with isotonic saline solution. For hardened cells the value obtained was near 3.5. These results are compared with theories for suspensions of both rigid and deformable particles. Several theories for deformable particles predict an increase in intrinsic viscoelasticity with increases in the ratio of the viscosity of the interior of the particle to that of the suspending medium. This ratio controls the balance between rotational and deformational response of the cell in the flow field. The trends of these theories were observed in the measurements.

摘要

红细胞悬液的固有粘弹性在确定单个非相互作用细胞在振荡剪切流场中的可变形性方面具有巨大潜力。为了外推至零细胞浓度,使用2赫兹振荡流和10/秒的剪切速率测量了复粘弹性模量作为血细胞比容的函数。对正常细胞和用戊二醛硬化后可变形性严重降低的细胞都进行了此操作。悬浮介质为血浆、等渗盐水和右旋糖酐溶液。复固有粘弹性的实部通过对哈金斯方程进行回归拟合外推得到。对于天然血浆中的正常细胞,其值范围为1.7至2,当血浆用等渗盐溶液稀释时,增加到2.4至3.1的范围。对于硬化细胞,得到的值接近3.5。将这些结果与刚性和可变形颗粒悬液的理论进行了比较。几种可变形颗粒理论预测,随着颗粒内部粘度与悬浮介质粘度之比的增加,固有粘弹性会增加。该比值控制着细胞在流场中旋转和变形响应之间的平衡。在测量中观察到了这些理论的趋势。

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