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小血管中的血液粘度:剪切速率、聚集和沉降的影响

Blood viscosity in small tubes: effect of shear rate, aggregation, and sedimentation.

作者信息

Reinke W, Gaehtgens P, Johnson P C

出版信息

Am J Physiol. 1987 Sep;253(3 Pt 2):H540-7. doi: 10.1152/ajpheart.1987.253.3.H540.

Abstract

Apparent viscosity was determined in vertical glass tubes (ID 30.2-132.3 microns) with suspensions of human red cells in A) serum, B) saline containing 0.5 g/100 ml albumin, C) plasma, and D) plasma containing Dextran 250 at a feed hematocrit of 0.45. Pressure-flow relationships were obtained in a range of pseudo-shear rates (mu) between 0.15 and 250 s-1. Relative viscosities in the nonaggregating suspensions (A and B) were found to increase monotonically with decreasing mu. The Fahraeus-Lindqvist effect was present in the entire range of mu. In the two aggregating suspensions (C and D), viscosities increased initially in larger but not small tubes with declining mu and fell in all tubes at some characteristic mu (usually below 10 s-1). Viscosity reduction was greater in the larger tubes and in suspensions with greater aggregation tendency. With suspension D, the Fahraeus-Lindqvist effect was eliminated in the lowermost shear-rate range. The cell-free marginal zone increased in width (to a maximum of approximately 40% of tube radius) as viscosity declined. Measurements of viscosity and cell-free marginal zone were also performed with suspension C in tubes mounted in horizontal position. In contrast to vertical tubes, a monotonic increase in viscosity was found with decreasing mu, associated with cell sedimentation and development of a cell-free layer only in the upper portion of the tubes.

摘要

表观粘度是在垂直玻璃管(内径30.2 - 132.3微米)中测定的,所用悬浮液为人类红细胞分别悬浮于:A)血清中、B)含0.5 g/100 ml白蛋白的盐溶液中、C)血浆中,以及D)含右旋糖酐250的血浆中,进料血细胞比容为0.45。在0.15至250 s-1的一系列拟剪切速率(μ)范围内获得压力 - 流量关系。发现非聚集悬浮液(A和B)中的相对粘度随μ的降低而单调增加。在整个μ范围内都存在法厄瑞 - 林德奎斯特效应。在两种聚集悬浮液(C和D)中,粘度最初在较大而非较小的管中随μ的降低而增加,并且在某些特征性μ(通常低于10 s-1)时在所有管中均下降。在较大的管中和具有更大聚集倾向的悬浮液中粘度降低更大。对于悬浮液D,在最低剪切速率范围内法厄瑞 - 林德奎斯特效应消失。随着粘度下降,无细胞边缘区宽度增加(最大可达管半径的约40%)。还对水平放置的管中的悬浮液C进行了粘度和无细胞边缘区的测量。与垂直管相反,发现粘度随μ的降低而单调增加,这与细胞沉降以及仅在管的上部形成无细胞层有关。

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