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首页> 外文期刊>American Journal of Physiology >Motion of red blood cells in a capillary with an endothelial surface layer: effect of flow velocity.
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Motion of red blood cells in a capillary with an endothelial surface layer: effect of flow velocity.

机译:带有内皮表层的毛细管中红细胞的运动:流速的影响。

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Interior surfaces of capillaries are lined with macromolecules forming an endothelial surface layer (ESL). A theoretical model is used to investigate effects of flow velocity on motion and axisymmetric deformation of red blood cells in a capillary with an ESL. Cell deformation is analyzed, including effects of membrane shear and bending elasticity. Plasma flow around the cell and through the ESL is computed using lubrication theory. The ESL is represented as a porous layer that exerts compressive forces on red blood cells that penetrate it. According to the model, hydrodynamic pressures generated by plasma flow around the cell squeeze moving red blood cells into narrow elongated shapes. If the ESL is 0.7 microm wide, with hydraulic resistivity of 2 x 10(8) dyn x s x cm(-4), and exerts a force of 20 dyn/cm2, predicted variation with flow velocity of the gap width between red blood cell and capillary wall agrees well with observations. Predicted gap at a velocity of 0.1 mm/s is approximately 0.6 microm vs. approximately 0.2 microm with no ESL. Predicted flow resistance increases markedly at low velocities. The model shows that exclusion of red blood cells from the ESL in flowing capillaries can result from hydrodynamic forces generated by plasma flow through the ESL.
机译:毛细管的内表面衬有形成内皮表面层(ESL)的大分子。使用理论模型来研究流速对具有ESL的毛细管中红细胞运动和轴对称变形的影响。分析细胞变形,包括膜剪切和弯曲弹性的影响。使用润滑原理计算细胞周围和通过ESL的血浆流量。 ESL被表示为对穿透它的红细胞施加压缩力的多孔层。根据该模型,血浆在细胞周围流动产生的流体动力压力将移动的红细胞挤压成狭窄的细长形状。如果ESL宽度为0.7微米,水力电阻率为2 x 10(8)dyn xsx cm(-4),并且施加20 dyn / cm2的力,则预测的红血球与毛细血管壁与观察结果非常吻合。以0.1 mm / s的速度预测的间隙约为0.6微米,而没有ESL的间隙约为0.2微米。在低速下,预计的流动阻力会明显增加。该模型显示,流动的毛细血管中的ESL排除了红细胞,这可能是由于流过ESL的血浆产生的流体动力引起的。

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