Cortical neurons are often classified by current-frequency relationship. Such a static description is inadequate to interpret neuronal responses to time-varying stimuli. Theoretical studies suggested that single-cell dynamical response properties are necessary to interpret ensemble responses to fast input transients. Further, it was shown that input-noise linearizes and boosts the response bandwidth, and that the interplay between the barrage of noisy synaptic currents and the spike-initiation mechanisms determine the dynamical properties of the firing rate. To test these model predictions, we estimated the linear response properties of layer 5 pyramidal cells by injecting a superposition of a small-amplitude sinusoidal wave and a backgroun...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
Cortical neurons are often classified by current--frequency relation-ship. Such a static description...
To understand the mechanisms of fast information processing in the brain, it is necessary to determi...
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...
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...
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...
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...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
Cortical neurons are often classified by current-frequency relationship. Such a static description i...
Cortical neurons are often classified by current--frequency relation-ship. Such a static description...
To understand the mechanisms of fast information processing in the brain, it is necessary to determi...
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...
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...
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...
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...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
Recently, the use of a noisy input current to investigate single cell and network behavior in vitro ...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...