Struijk J J
Center for Sensory Motor Interaction, Aalborg University, Aalborg Ost, Denmark.
Biophys J. 1997 Jun;72(6):2457-69. doi: 10.1016/S0006-3495(97)78890-8.
A model is presented for the calculation of single myelinated fiber action potentials in an unbounded homogeneous medium and in nerve cuff electrodes. The model consists of a fiber model, used to calculate the action currents at the nodes of Ranvier, and a cylindrically symmetrical volume conductor model in which the fiber's nodes are represented as point current sources. The extracellular action potentials were shown to remain unchanged if the fiber diameter and the volume conductor geometry are scaled by the same factor (principle of corresponding states), both in an unbounded homogeneous medium and in an inhomogeneous volume conductor. The influence of several cuff electrode parameters, among others, cuff length and cuff diameter, were studied, and the results were compared, where possible, with theoretical and experimental results as reported in the literature.
本文提出了一种用于计算无界均匀介质和神经袖套电极中单个有髓纤维动作电位的模型。该模型由一个用于计算郎飞结处动作电流的纤维模型和一个圆柱形对称体积导体模型组成,其中纤维的节点被表示为点电流源。结果表明,在无界均匀介质和非均匀体积导体中,如果纤维直径和体积导体几何形状按相同因子缩放(对应态原理),细胞外动作电位将保持不变。研究了几个袖套电极参数的影响,包括袖套长度和袖套直径等,并在可能的情况下将结果与文献中报道的理论和实验结果进行了比较。