Abe K, Takano Y, Sakanishi A
Biorheology. 1986;23(1):75-87. doi: 10.3233/bir-1986-23106.
To discuss the relaxation phenomena of biological cell suspensions, we calculate the complex intrinsic viscosity of dispersions of spherical cells with viscoelastic membrane as a function of the frequency taking account of interfacial tension at both the interfaces of the membrane. The Maxwell model and two kinds of the three-parameter models are used to describe the viscoelasticity of the cell membrane. The results are computed mainly for the Maxwell model similarly in case of the Voigt Model (Abe, K., Takano, Y. and Sakanishi, A. Biorheology 21 405-414, 1984). The computed results of the four models, the Voigt, the Maxwell and the two kinds of the three-parameter viscoelastic models, are compared with the experimental data.
为了讨论生物细胞悬浮液的松弛现象,我们计算了具有粘弹性膜的球形细胞分散体的复本征粘度,它是频率的函数,并考虑了膜两侧界面的界面张力。采用麦克斯韦模型和两种三参数模型来描述细胞膜的粘弹性。主要针对麦克斯韦模型进行了结果计算,在沃伊特模型的情况下结果类似(阿部,K.,高野,Y.和坂西,A.《生物流变学》21 405 - 414,1984)。将沃伊特模型、麦克斯韦模型和两种三参数粘弹性模型这四种模型的计算结果与实验数据进行了比较。