bioRxiv · 10.1101/066589
Receptive field formation by interacting excitatory and inhibitory synaptic plasticity
Abstract
The stimulus selectivity of synaptic currents in cortical neurons often shows a co-tuning of excitation and inhibition, but the mechanisms that underlie the emergence and plasticity of this co-tuning are not fully understood. Using a computational model, we show that an interaction of excitatory and inhibitory synaptic plasticity reproduces both the developmental and - when combined with a disinhibitory gate - the adult plasticity of excitatory and inhibitory receptive fields in auditory cortex. The co-tuning arises from inhibitory plasticity that balances excitation and inhibition, while excitatory stimulus selectivity can result from two different mechanisms. Inhibitory inputs with a broad stimulus tuning introduce a sliding threshold as in Bienenstock-Cooper-Munro rules, introducing an excitatory stimulus selectivity at the cost of a broader inhibitory receptive field. Alternatively, input asymmetries can be amplified by synaptic competition. The latter leaves any receptive field plasticity transient, a prediction we verify in recordings in auditory cortex.
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Claudia Clopath, Tim P Vogels, Robert C Froemke, Henning Sprekeler. 2016-07-29. Receptive field formation by interacting excitatory and inhibitory synaptic plasticity. https://doi.org/10.1101/066589
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