Little is known about the constraints that neuromodulation places upon neural coding. We investigated the relationship between cholinergic modulation of spike timing and rate in a compartment model of a neocortical neuron. Our results suggest that cholinergic modulation of spike timing is directly related to the modulation of spike rate via the insertion of new spikes, and that spike timing is best preserved when the firing rate is low, i.e., when a rate code is ineffective (Thorpe et al., Nature 381 (6582) (1996) 520-522). We propose that neocortical neurons may use a spike timing and a rate code complementarily in different portions of their dynamic range.Link_to_subscribed_fulltex
The firing rate of neocortical pyramidal neurons is believed to represent primarily the average arri...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
Little is known about the constraints that neuromodulation places upon neural coding. We investigate...
Little is known about the constraints that neuromodulation places upon neural coding. We investigate...
Neuromodulation can change not only the mean firing rate of a neuron, but also its pattern of firing...
Neocortical neurons in vivo are spontaneously active and intracellular recordings have revealed stro...
Neocortical neurons in vivo are spontaneously active and intracellular recordings have revealed stro...
Neocortical neurons in vive are spontaneously active and intracellular recordings have revealed stro...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
Spike generation in cortical neurons depends on the interplay between diverse intrinsic conductances...
The firing rate of neocortical pyramidal neurons is believed to represent primarily the average arri...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
Little is known about the constraints that neuromodulation places upon neural coding. We investigate...
Little is known about the constraints that neuromodulation places upon neural coding. We investigate...
Neuromodulation can change not only the mean firing rate of a neuron, but also its pattern of firing...
Neocortical neurons in vivo are spontaneously active and intracellular recordings have revealed stro...
Neocortical neurons in vivo are spontaneously active and intracellular recordings have revealed stro...
Neocortical neurons in vive are spontaneously active and intracellular recordings have revealed stro...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
Neuronal processing of sensory information requires that rapidly changing synaptic inputs are contin...
Spike generation in cortical neurons depends on the interplay between diverse intrinsic conductances...
The firing rate of neocortical pyramidal neurons is believed to represent primarily the average arri...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...