The brain produces dynamical rhythms at many frequencies that shift in amplitude and phase. To understand the functional consequences of mixtures of oscillations at the single cell level, we recorded the spike trains from single rat cortical neurons in vitro in response to two mixed sine wave currents. The reliability of spike timing was measured as a function of the relative power, phase and frequencies of the sine wave mixture. Peaks in the reliability were observed at a preferred phase difference, frequency and relative power. These results have a natural interpretation in terms of spike train attractors and bifurcations
Neural oscillations, including rhythms in the beta1 band (12–20 Hz), are important in various cognit...
Rhythmic voltage oscillations resulting from the summed activity of neuronal populations occur in ma...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
The brain produces dynamical rhythms at many frequencies that shift in amplitude and phase. To under...
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...
<div><p>The response of a neuron to repeated somatic fluctuating current injections <em>in vitro</em...
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...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
AbstractSynchronous oscillations in neural activity are found over wide areas of the cortex. Specifi...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
<p>Responses of two Layer 5 pyramidal cells in a slice preparation of rat prefrontal cortex. In (A) ...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
Throughout the brain, neurons encode information in fundamental units of spikes. Each spike represen...
Neural oscillations, including rhythms in the beta1 band (12–20 Hz), are important in various cognit...
Rhythmic voltage oscillations resulting from the summed activity of neuronal populations occur in ma...
A train of action potentials (a spike train) can carry information in both the average firing rate a...
The brain produces dynamical rhythms at many frequencies that shift in amplitude and phase. To under...
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...
<div><p>The response of a neuron to repeated somatic fluctuating current injections <em>in vitro</em...
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...
The response of a neuron to repeated somatic fluctuating current injections in vitro can elicit a re...
AbstractSynchronous oscillations in neural activity are found over wide areas of the cortex. Specifi...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
<p>Responses of two Layer 5 pyramidal cells in a slice preparation of rat prefrontal cortex. In (A) ...
Spike timing reliability of neuronal responses depends on the frequency content of the input. We inv...
Throughout the brain, neurons encode information in fundamental units of spikes. Each spike represen...
Neural oscillations, including rhythms in the beta1 band (12–20 Hz), are important in various cognit...
Rhythmic voltage oscillations resulting from the summed activity of neuronal populations occur in ma...
A train of action potentials (a spike train) can carry information in both the average firing rate a...