bioRxiv · 10.1101/729988
Complementary inhibitory receptive fields emerge from synaptic plasticity and create an attentional switch in sensory circuits
Abstract
Cortical areas comprise multiple types of inhibitory interneurons with stereotypical connectivity motifs, but their combined effect on postsynaptic dynamics has been largely unexplored. Here, we analyse the response of a single postsynaptic model neuron receiving tuned excitatory connections alongside inhibition from two plastic populations. Depending on the inhibitory plasticity rule, synapses remain unspecific (flat), become anti-correlated to, or mirror excitatory synapses. Crucially, the neurons receptive field, i.e., its response to presynaptic stimuli, depends on the modulatory state of inhibition. When both inhibitory populations are active, inhibition balances excitation, resulting in uncorrelated postsynaptic responses regardless of the inhibitory tuning profiles. Modulating the activity of a given inhibitory population produces strong correlations to either preferred or non-preferred inputs, in line with recent experimental findings showing dramatic context-dependent changes of neurons receptive fields. We thus confirm that a neurons receptive field doesnt follow directly from the weight profiles of its presynaptic afferents.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Agnes, E. J., Luppi, A. I., Vogels, T. P.. 2019-08-08. Complementary inhibitory receptive fields emerge from synaptic plasticity and create an attentional switch in sensory circuits. https://doi.org/10.1101/729988
Cite the original work for its findings. Save a collection to share your selection of sources.