PubMed · 11570997
Spike-timing-dependent Hebbian plasticity as temporal difference learning.
Abstract
A spike-timing-dependent Hebbian mechanism governs the plasticity of recurrent excitatory synapses in the neocortex: synapses that are activated a few milliseconds before a postsynaptic spike are potentiated, while those that are activated a few milliseconds after are depressed. We show that such a mechanism can implement a form of temporal difference learning for prediction of input sequences. Using a biophysical model of a cortical neuron, we show that a temporal difference rule used in conjunction with dendritic backpropagating action potentials reproduces the temporally asymmetric window of Hebbian plasticity observed physio-logically. Furthermore, the size and shape of the window vary with the distance of the synapse from the soma. Using a simple example, we show how a spike-timing-based temporal difference learning rule can allow a network of neocortical neurons to predict an input a few milliseconds before the input's expected arrival.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
R P Rao, T J Sejnowski. 2001. Spike-timing-dependent Hebbian plasticity as temporal difference learning.. https://doi.org/10.1162/089976601750541787
Cite the original work for its findings. Save a collection to share your selection of sources.