Modeling Synaptic Plasticity in Conjunction with the Timing of Pre- and Postsynaptic Action Potentials
- 1 February 2000
- journal article
- Published by MIT Press in Neural Computation
- Vol. 12 (2) , 385-405
- https://doi.org/10.1162/089976600300015844
Abstract
We present a spiking neuron model that allows for an analytic calculation of the correlations between pre- and postsynaptic spikes. The neuron model is a generalization of the integrate-and-fire model and equipped with a probabilistic spike-triggering mechanism. We show that under certain biologically plausible conditions, pre- and postsynaptic spike trains can be described simultaneously as an inhomogeneous Poisson process. Inspired by experimental findings, we develop a model for synaptic long-term plasticity that relies on the relative timing of pre- and post-synaptic action potentials. Being given an input statistics, we compute the stationary synaptic weights that result from the temporal correlations between the pre- and postsynaptic spikes. By means of both analytic calculations and computer simulations, we show that such a mechanism of synaptic plasticity is able to strengthen those input synapses that convey precisely timed spikes at the expense of synapses that deliver spikes with a broad temporal distribution. This may be of vital importance for any kind of information processing based on spiking neurons and temporal coding.Keywords
This publication has 13 references indexed in Scilit:
- Reduction of the Hodgkin-Huxley Equations to a Single-Variable Threshold ModelNeural Computation, 1997
- Synaptic plasticity in a cerebellum-like structure depends on temporal orderNature, 1997
- Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPsScience, 1997
- A neuronal learning rule for sub-millisecond temporal codingNature, 1996
- Cyclic AMP Mediates a Presynaptic Form of LTP at Cerebellar Parallel Fiber SynapsesNeuron, 1996
- Time structure of the activity in neural network modelsPhysical Review E, 1995
- Synapse elimination from the mouse neuromuscular junction in vitro: A non‐hebbian activity‐dependent processJournal of Neurobiology, 1993
- Hebbian Depression of Isolated Neuromuscular Synapses in VitroScience, 1992
- Associative memory in a network of ‘spiking’ neuronsNetwork: Computation in Neural Systems, 1992
- Postsynaptic Hebbian and non-Hebbian long-term potentiation of synaptic efficacy in the entorhinal cortex in slices and in the isolated adult guinea pig brain.Proceedings of the National Academy of Sciences, 1990