AUTHOR=Hertäg Loreen , Durstewitz Daniel , Brunel Nicolas TITLE=Analytical approximations of the firing rate of an adaptive exponential integrate-and-fire neuron in the presence of synaptic noise JOURNAL=Frontiers in Computational Neuroscience VOLUME=Volume 8 - 2014 YEAR=2014 URL=https://www.frontiersin.org/journals/computational-neuroscience/articles/10.3389/fncom.2014.00116 DOI=10.3389/fncom.2014.00116 ISSN=1662-5188 ABSTRACT=
Computational models offer a unique tool for understanding the network-dynamical mechanisms which mediate between physiological and biophysical properties, and behavioral function. A traditional challenge in computational neuroscience is, however, that simple neuronal models which can be studied analytically fail to reproduce the diversity of electrophysiological behaviors seen in real neurons, while detailed neuronal models which do reproduce such diversity are intractable analytically and computationally expensive. A number of intermediate models have been proposed whose aim is to capture the diversity of firing behaviors and spike times of real neurons while entailing the simplest possible mathematical description. One such model is the exponential integrate-and-fire neuron with spike rate adaptation (aEIF) which consists of two differential equations for the membrane potential (