Di Biasio A, Cametti C
Dipartimento di Fisica, Universita' di Camerino, Camerino, Italy.
Bioelectrochemistry. 2007 Nov;71(2):149-56. doi: 10.1016/j.bioelechem.2007.03.002. Epub 2007 Mar 14.
In this note, we analyze the effect of cell shape on the dielectric and conductometric behavior of biological cell suspension, in a frequency range where the interfacial polarization characteristic of highly heterogeneous systems occurs. We consider two different families of curves, both of them capable of generating a variety of symmetric or asymmetric shapes, ranging from oval, to dog-bone like, to lemniscate curves. These curves, which differ from those generally employed in dielectric models of biological cell suspensions, describe in principle different cells including discocytes, cup-shaped cells, pear-shaped cells, dumbbells and cells with spherical protrusions or invaginations. Our analysis, based on a numerical solution of the Laplace equation by means of boundary element methods, is carried out in the attempt of separating the contributions associated with the different electrical properties of the dielectric media involved from the ones mainly associated with the shape of the cell. We determine the dielectric strength of the dielectric dispersion for a variety of cell shapes and the phenomenological correlation between this parameter of the relaxation and the cell geometry is briefly discussed and commented.
在本笔记中,我们分析了细胞形状对生物细胞悬浮液介电和电导行为的影响,该频率范围会出现高度异质系统的界面极化特性。我们考虑了两类不同的曲线族,它们都能够生成从椭圆形到狗骨形再到双纽线等各种对称或不对称形状。这些曲线与生物细胞悬浮液介电模型中通常使用的曲线不同,原则上描述了包括盘状细胞、杯状细胞、梨状细胞、哑铃状细胞以及具有球形突起或内陷的细胞等不同类型的细胞。我们基于边界元法对拉普拉斯方程进行数值求解的分析,旨在将与所涉及介电介质不同电学性质相关的贡献与主要与细胞形状相关的贡献区分开来。我们确定了多种细胞形状下介电色散的介电强度,并简要讨论和评论了弛豫这个参数与细胞几何形状之间的唯象相关性。