Chien S, Sung L A, Lee M M, Skalak R
Institute for Biomedical Engineering, University of California, San Diego, La Jolla 92093-0412.
Biorheology. 1992 Sep-Dec;29(5-6):467-78. doi: 10.3233/bir-1992-295-607.
The elasticity of red cell membrane was determined in a rectangular flow channel under controlled shear flow. The relation between shear stress and cell extension ratio (lambda) has been analyzed with the use of Evans' two-dimensional model. The deformed cell shapes observed experimentally agreed well with the model with lambda up to 1.4. The best correlation was found at lambda = 1.2. The analysis suggests a nonlinear extensional membrane modulus in the low stress range encountered in the flow channel. In terms of an appropriate strain parameter, the elastic modulus is shown to rise toward the level encountered in micropipette aspiration experiments. The implications of the present findings in modeling of cell mechanics and in cell hemolysis are discussed.
在可控剪切流条件下,于矩形流动通道中测定红细胞膜的弹性。利用埃文斯二维模型分析了剪切应力与细胞伸长率(λ)之间的关系。实验观察到的变形细胞形状与λ高达1.4的模型吻合良好。在λ = 1.2时发现最佳相关性。分析表明,在流动通道中遇到的低应力范围内,存在非线性拉伸膜模量。就适当的应变参数而言,弹性模量显示出向微量吸管吸液实验中遇到的水平上升的趋势。讨论了本研究结果在细胞力学建模和细胞溶血方面的意义。