Cell-type specific projection patterns promote balanced activity in cortical microcircuits
Kurth, A. C.; Albers, J.; Diesmann, M.; van Albada, S. J.
Show abstract
The structure of neural networks provides the stage on which their activity unfolds. Models of cerebral cortex linking connectivity to dynamics have primarily relied on probabilistic estimates of connectivity derived from paired electrophysiological recordings or single-neuron morphologies obtained by light microscopy (LM) studies. Only recently have electron microscopy (EM) data sets been processed and made available for volumes of cortex on the cubic millimeter scale, exposing the actual connectivity of neurons. Here, we construct a population-based, layer-resolved connectivity map from EM data, taking into account the spatial scale of local cortical connectivity. We compare the obtained connectivity with a map based on an established LM data set. Simulating spiking neural networks constrained by the derived microcircuit architectures shows that both models allow for biologically plausible ongoing activity when synaptic currents caused by neurons outside the network model are specifically adjusted for every population. However, differentially varying the external current onto excitatory and inhibitory populations reveals that only the EM-based model robustly exhibits biologically plausible dynamics. Our work confirms the long-standing hypothesis that a preference of excitatory neurons for inhibitory targets, not present in the LM-based model, promotes balanced activity in cortical microcircuits.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Constrained brain volume in an efficient coding model explains the fraction of excitatory and inhibitory neurons in sensory cortices 97%
- Temporal resolution of spike coding in feedforward networks with signal convergence and divergence 97%
- Predicting synchronous firing of large neural populations from sequential recordings 97%
Similar papers in this journal
- Adaptation of spontaneous activity in the developing visual cortex 97%
- Granger causality analysis for calcium transients in neuronal networks: challenges and improvements 97%
- Beta oscillations and waves in motor cortex can be accounted for by the interplay of spatially-structured connectivity and fluctuating inputs 97%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.