Milstein Joshua N, Koch Christof
California Institute of Technology, Pasadena, CA 91125, USA.
Neural Comput. 2008 Aug;20(8):2070-84. doi: 10.1162/neco.2008.06-07-537.
Based on the membrane currents generated by an action potential in a biologically realistic model of a pyramidal, hippocampal cell within rat CA1, we perform a moment expansion of the extracellular field potential. We decompose the potential into both inverse and classical moments and show that this method is a rapid and efficient way to calculate the extracellular field both near and far from the cell body. The action potential gives rise to a large quadrupole moment that contributes to the extracellular field up to distances of almost 1 cm. This method will serve as a starting point in connecting the microscopic generation of electric fields at the level of neurons to macroscopic observables such as the local field potential.
基于大鼠CA1区锥体细胞的生物逼真模型中动作电位产生的膜电流,我们对细胞外场电位进行了矩展开。我们将电位分解为逆矩和经典矩,并表明该方法是一种计算靠近和远离细胞体的细胞外场的快速有效方法。动作电位产生一个大的四极矩,该四极矩对细胞外场的贡献可达近1厘米的距离。该方法将作为连接神经元水平微观电场产生与宏观可观测值(如局部场电位)的起点。