Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current--is it then possible to predict the spike timing knowing the input? We determined parameters of an adapting threshold model using data recorded in vitro from 24 layer 5 pyramidal neurons from rat somatosensory cortex, stimulated intracellularly by a fluctuating current simulating synaptic bombardment in vivo. The model generates output spikes whenever the membrane voltage (a filtered version of the input current) reaches a dynamic threshold. We find that for input currents with large fluctuation amplitude, up to 75% of the spike times can be predicted with a precision of +/-2 ms. Some of the intrinsic neuronal unreliability can be accounted for by...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
This work investigates the capacity of Integrate-and-Fire-type (I&F-type) models to quantitatively p...
In vivo studies have shown that neurons in the neocortex can generate action potentials at high temp...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
Cortical neurons are often classified by current--frequency relation-ship. Such a static description...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
<p><b>(A)</b> We performed patch-clamp recordings in layer 2/3 pyramidal neurons in vitro, in respon...
In computational neuroscience, it is of crucial importance to dispose of a model that is able to acc...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
The ability of simple mathematical models to predict the activity of single neurons is important for...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
Neurons generate spikes reliably with millisecond precision if driven by a fluctuating current—is it...
This work investigates the capacity of Integrate-and-Fire-type (I&F-type) models to quantitatively p...
In vivo studies have shown that neurons in the neocortex can generate action potentials at high temp...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
Cortical neurons are often classified by current--frequency relation-ship. Such a static description...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
<p><b>(A)</b> We performed patch-clamp recordings in layer 2/3 pyramidal neurons in vitro, in respon...
In computational neuroscience, it is of crucial importance to dispose of a model that is able to acc...
The information communicated by stereotypical action potentials is thought to be embedded in the tim...
The ability of simple mathematical models to predict the activity of single neurons is important for...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...
Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, fa...