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磁共振显微镜测定了库埃特粘度计中的速度和血细胞比容分布。

Magnetic resonance microscopy determined velocity and hematocrit distributions in a Couette viscometer.

作者信息

Cokelet Giles R, Brown Jennifer R, Codd Sarah L, Seymour Joseph D

机构信息

Department of Chemical and Biological Engineering, Montana State University, Bozeman, MT 59175-3920, USA.

出版信息

Biorheology. 2005;42(5):385-99.

Abstract

Magnetic resonance microscopy is used to non-invasively measure the radial velocity distribution in Couette flow of erythrocyte suspensions of varying aggregation behavior at a nominal shear rate of 2.20 s(-1) in a 1 mm gap. Suspensions of red blood cells in albumin-saline, plasma and 1.48% Dextran added plasma at average hematocrits near 0.40 are studied, providing a range of aggregation ability. The spatial distribution of the red blood cell volume fraction, hematocrit, is calculated from the velocity distribution. The hematocrit profiles provide direct measure of the thickness of the aggregation and shear rate dependent red blood cell depletion at the Couette surfaces. At the nominal shear rate studied hematocrit distributions for the red blood cells in plasma show a depletion zone near the inner Couette wall but not the outer wall. The red blood cells in plasma with Dextran show cell depletion regions of approximately 100 mum at both the inner and outer Couette surfaces, with greater depletion at the inner wall, but approach the normal blood hematocrit distribution with a doubling of shear rate due to decreased aggregation. The material response of the blood is spatially dependent with the shear rate and the hematocrit distribution non-uniform across the gap.

摘要

磁共振显微镜用于在1毫米间隙中以2.20 s(-1)的标称剪切速率对具有不同聚集行为的红细胞悬浮液的库埃特流中的径向速度分布进行非侵入性测量。研究了平均血细胞比容接近0.40的白蛋白盐水、血浆以及添加了1.48%右旋糖酐的血浆中的红细胞悬浮液,提供了一系列聚集能力。红细胞体积分数(即血细胞比容)的空间分布由速度分布计算得出。血细胞比容剖面图直接测量了库埃特表面聚集厚度以及与剪切速率相关的红细胞损耗情况。在所研究的标称剪切速率下,血浆中红细胞的血细胞比容分布在内库埃特壁附近显示出一个损耗区,但在外壁未显示。添加了右旋糖酐的血浆中的红细胞在内库埃特表面和外库埃特表面均显示出约100微米的细胞损耗区,在内壁损耗更大,但由于聚集减少,随着剪切速率加倍,接近正常血液血细胞比容分布。血液的物质响应在空间上取决于剪切速率,并且血细胞比容分布在整个间隙中不均匀。

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