Barach J P, Wikswo J P
Biophys J. 1987 Feb;51(2):177-83. doi: 10.1016/S0006-3495(87)83323-4.
The nonlinear, core-conductor model of action potential propagation down axisymmetric nerve fibers is adapted for an implicit, numerical simulation by computer solution of the differential equations. The calculation allows a septum to be inserted in the model fiber; the thin, passive septum is characterized by series resistance Rsz and shunt resistance Rss to the grounded bath. If Rsz is too large or Rss too small, the signal fails to propagate through the septum. Plots of the action potential profiles for various axial positions are obtained and show distortions due to the presence of the septum. A simple linear model, developed from these simulations, relates propagation delay through the septum and the preseptal risetime to Rsz and Rss. This model agrees with the simulations for a wide range of parameters and allows estimation of Rsz and Rss from measured propagation delays at the septum. Plots of the axial current as a function of both time and position demonstrate how the presence of the septum can cause prominent local reversals of the current. This result, not previously described, suggests that extracellular magnetic measurements of cellular action currents could be useful in the biophysical study of septated fibers.
将沿轴对称神经纤维传播的动作电位的非线性、核心导体模型用于通过微分方程的计算机求解进行隐式数值模拟。该计算允许在模型纤维中插入一个隔膜;薄的无源隔膜的特征是与接地浴的串联电阻Rsz和并联电阻Rss。如果Rsz太大或Rss太小,信号将无法通过隔膜传播。获得了不同轴向位置的动作电位分布图,显示出由于隔膜的存在而产生的失真。从这些模拟中开发出一个简单的线性模型,该模型将通过隔膜的传播延迟和隔膜前的上升时间与Rsz和Rss联系起来。该模型在很宽的参数范围内与模拟结果一致,并允许根据在隔膜处测得的传播延迟来估计Rsz和Rss。作为时间和位置函数的轴向电流图表明隔膜的存在如何导致电流出现明显的局部反转。这一先前未描述的结果表明,细胞动作电流的细胞外磁测量在分隔纤维的生物物理研究中可能有用。