Grover N B, Naaman J, Ben-Sasson S, Doljanski F
Biophys J. 1969 Nov;9(11):1398-414. doi: 10.1016/S0006-3495(69)86461-1.
The processes involved during the passage of a suspended particle through a small cylindrical orifice across which exists an electric field are considered in detail. Expressions are derived for the resulting change in current in terms of the ratios of particle to orifice volume and particle to suspending fluid resistivity, and particle shape. Graphs are presented of the electric field and of the fluid velocity as functions of position within the orifice, and of the shape factor of spheroids as a function of their axial ratio and orientation in the electric field. The effects of the electric and hydrodynamic fields on the orientation of nonspherical particles and on the deformation of nonrigid spheres is treated, and the migration of particles towards the orifice axis is discussed. Oscillograms of current pulses produced by rigid, nonconducting spheres in various orifices are shown and compared with the theoretical predictions.
详细考虑了悬浮颗粒通过存在电场的小圆柱形孔口时所涉及的过程。根据颗粒与孔口体积之比、颗粒与悬浮流体电阻率之比以及颗粒形状,推导了电流产生变化的表达式。给出了作为孔口内位置函数的电场和流体速度以及作为长轴比和电场中取向函数的球体形状因子的图表。研究了电场和流体动力场对非球形颗粒取向和非刚性球体变形的影响,并讨论了颗粒向孔口轴线的迁移。展示了刚性、非导电球体在各种孔口中产生的电流脉冲的示波器图,并与理论预测进行了比较。