Spike-timing Dependent Plasticity and Mutual Information Maximization for a Spiking Neuron Model

Toyoizumi, Taro, Pfister, Jean-pascal, Aihara, Kazuyuki, Gerstner, Wulfram

Neural Information Processing Systems 

We derive an optimal learning rule in the sense of mutual information maximization for a spiking neuron model. Under the assumption of small fluctuations of the input, we find a spike-timing dependent plasticity (STDP)function which depends on the time course of excitatory postsynaptic potentials (EPSPs) and the autocorrelation function of the postsynaptic neuron. We show that the STDP function has both positive and negative phases. The positive phase is related to the shape of the EPSP while the negative phase is controlled by neuronal refractoriness.

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