Throughout the brain, neurons encode information in fundamental units of spikes. Each spike represents the combined thresholding of synaptic inputs and intrinsic neuronal dynamics. Here, we address a basic question of spike train formation: how do perithreshold synaptic inputs perturb the output of a spiking neuron? We recorded from single entorhinal principal cells in vitro and drove them to spike steadily at ∼5 Hz (theta range) with direct current injection, then used a dynamic-clamp to superimpose strong excitatory conductance inputs at varying rates. Neurons spiked most reliably when the input rate matched the intrinsic neuronal firing rate. We also found a striking tendency of neurons to preserve their rates and coefficients of variati...
An extensive study of the reproducibility of neural spike train responses to an identical stimulus a...
Cortical neurons continuously transform sets of incoming spike trains into output spike trains. This...
Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies ...
Throughout the brain, neurons encode information in fundamental units of spikes. Each spike represen...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
Many neurons exhibit subthreshold membrane-potential resonances, such that the largest voltage respo...
An extensive study of the reproducibility of neural spike train responses to an identical stimulus a...
An extensive study of the reproducibility of neural spike train responses to an identical stimulus a...
Cortical neurons continuously transform sets of incoming spike trains into output spike trains. This...
Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies ...
Throughout the brain, neurons encode information in fundamental units of spikes. Each spike represen...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
Many neurons exhibit subthreshold membrane-potential resonances, such that the largest voltage respo...
An extensive study of the reproducibility of neural spike train responses to an identical stimulus a...
An extensive study of the reproducibility of neural spike train responses to an identical stimulus a...
Cortical neurons continuously transform sets of incoming spike trains into output spike trains. This...
Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies ...