Eisenberg R S, Barcilon V, Mathias R T
Biophys J. 1979 Jan;25(1):151-80. doi: 10.1016/S0006-3495(79)85283-2.
Syncytial tissues consist of many cells whose intracellular spaces are electrically coupled one to another. Such tissues typically include narrow, tortuous extracellular space and often have specialized membranes at their outer surface. We derive differential equations to describe the potentials induced when a sinusoidal or steady current is applied to the intracellular space with a microelectrode. We derive solutions for spherical preparations with isotropic properties or with a particular anisotropy in effective extracellular and intracellular resistivities. Solutions are presented in an approximate form with a simple physical interpretation. The leading term in the intracellular potential describes an "isopotential" cell in which there is no spatial variation of intracellular potential. The leading term in the extracellular potential, and thus the potential across the inner membranes, varies with radial position, even at zero frequency. The next term of the potentials describes the direct effects of the point source of current and, for the parameters given here, acts as a series resistance producing a large local potential drop essentially independent of frequency. A lumped equivalent circuit describes the "low frequency" behavior of the syncytium, and a distributed circuit gives a reasonably accurate general description. Graphs of the spatial variation and frequency dependence of intracellular, extracellular, and transmembrane potential are given, the response to sinusoidal currents is used to calculate numerically the response to a step function of current.
合体组织由许多细胞组成,这些细胞的细胞内空间彼此电耦合。这类组织通常包括狭窄、曲折的细胞外空间,并且其外表面常常具有特化的膜。我们推导了微分方程,以描述当用微电极向细胞内空间施加正弦电流或稳恒电流时所感应的电位。我们推导了具有各向同性特性或在有效细胞外和细胞内电阻率方面具有特定各向异性的球形标本的解。解以一种具有简单物理解释的近似形式给出。细胞内电位的主导项描述了一个“等电位”细胞,其中细胞内电位没有空间变化。细胞外电位的主导项,以及因此内膜上的电位,即使在零频率下也随径向位置而变化。电位的下一项描述了电流点源的直接效应,并且对于这里给出的参数,其作用类似于一个串联电阻,产生基本上与频率无关的大的局部电位降。一个集总等效电路描述了合体的“低频”行为,而一个分布电路给出了一个相当准确的一般描述。给出了细胞内、细胞外和跨膜电位的空间变化和频率依赖性的图表,利用对正弦电流的响应来数值计算对电流阶跃函数的响应。