Skalak R, Tozeren A, Zarda R P, Chien S
Biophys J. 1973 Mar;13(3):245-64. doi: 10.1016/S0006-3495(73)85983-1.
The several widely different values of the elastic modulus of the human red blood cell membrane which have been reported in the literature are incorporated into a single strain energy function consisting of two terms. One term gives the small stresses and low elastic modulus which is observed when the red cell membrane is deformed at constant area. The second term contributes a large isotropic stress dependent on the change of area. The strain energy function is applied to the process of sphering of red blood cells in a hypotonic solution. It is shown that a nearly perfect sphere can result even though the red blood cell membrane is homogeneous in all areas of the cell. Results pertinent to sieving and micropipette experiments are also explored.
文献中报道的人类红细胞膜弹性模量的几个差异很大的值被纳入一个由两项组成的单一应变能函数中。一项给出了在红细胞膜以恒定面积变形时观察到的小应力和低弹性模量。第二项贡献了一个与面积变化有关的大的各向同性应力。该应变能函数被应用于红细胞在低渗溶液中形成球形的过程。结果表明,即使红细胞膜在细胞的所有区域都是均匀的,也能形成近乎完美的球体。还探讨了与筛分和微量移液器实验相关的结果。