Experimentalphysik, Universität des Saarlandes, Postfach 151150, 66041 Saarbrücken, Germany.
Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Phys Rev Lett. 2013 Feb 15;110(7):078305. doi: 10.1103/PhysRevLett.110.078305.
We investigate the rheological characteristics of human blood plasma in shear and elongational flows. While we can confirm a Newtonian behavior in shear flow within experimental resolution, we find a viscoelastic behavior of blood plasma in the pure extensional flow of a capillary breakup rheometer. The influence of the viscoelasticity of blood plasma on capillary blood flow is tested in a microfluidic device with a contraction-expansion geometry. Differential pressure measurements revealed that the plasma has a pronounced flow resistance compared to that of pure water. Supplementary measurements indicate that the viscoelasticity of the plasma might even lead to viscoelastic instabilities under certain conditions. Our findings show that the viscoelastic properties of plasma should not be ignored in future studies on blood flow.
我们研究了人血浆在剪切和拉伸流动中的流变特性。虽然我们可以在实验分辨率内确认在剪切流动中的牛顿行为,但我们在毛细管破裂流变仪的纯拉伸流动中发现了血浆的粘弹性行为。在具有收缩-扩张几何形状的微流控装置中测试了血浆的粘弹性对毛细管血流的影响。压差测量表明,与纯水相比,血浆具有明显的流动阻力。补充测量表明,在某些条件下,血浆的粘弹性甚至可能导致粘弹性不稳定性。我们的研究结果表明,在未来的血流研究中,血浆的粘弹性特性不应被忽视。