Spike Reliability is Cell-Type Specific and Shapes Excitation and Inhibition in the Cortex
Russo, S.; Stanley, G. B.; Najafi, F.
Show abstract
Neurons encode information in the highly variable spiking activity of neuronal populations, so that different repetitions of the same stimulus can generate action potentials that vary significantly in terms of the count and timing. How does spiking variability originate, and does it have a functional purpose? Leveraging the Allen Institute cell types dataset, we relate the spiking reliability of cortical neurons in-vitro during the intracellular injection of current resembling synaptic inputs to their morphologic, electrophysiologic, and transcriptomic classes. Our findings demonstrate that parvalbumin+ (PV) interneurons, a subclass of inhibitory neurons, show high reliability compared to other neuronal subclasses, particularly excitatory neurons. Through computational modeling, we predict that the high reliability of PV interneurons allows for strong and precise inhibition in downstream neurons, while the lower reliability of excitatory neurons allows for integrating multiple synaptic inputs leading to a spiking rate code. These findings illuminate how spiking variability in different neuronal classes affect information propagation in the brain, leading to precise inhibition and spiking rate codes.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Decoupling of timescales reveals sparse convergent CPG network in the adult spinal cord 96%
- A presynaptic source drives differing levels of surround suppression in two mouse retina ganglion cell types 95%
- Synaptic and intrinsic membrane defects disrupt early neural network dynamics in Down syndrome 95%
Similar papers in this journal
- Single-neuron models linking electrophysiology, morphology and transcriptomics across cortical cell types 96%
- Spinal microcircuits go through multiphasic homeostatic compensations in a mouse model of motoneuron degeneration 95%
- Reliable sensory processing of superficial cortical interneurons is modulated by behavioral state 95%
"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.