Ensembles of cortical neurons can track fast-varying inputs and relay them in their spike trains, far beyond the cut-off imposed by membrane passive electrical properties and mean firing rates. Initially explored in silico and later demonstrated experimentally, investigating how neurons respond to sinusoidally modulated stimuli provides a deeper insight into spike initiation mechanisms and information processing than conventional F–I curve methodologies. Besides net membrane currents, physiological synaptic inputs can also induce a stimulus-dependent modulation of the total membrane conductance, which is not reproduced by standard current-clamp protocols. Here, we investigated whether rat cortical neurons can track fast temporal modulations...
The abilities of neuronal populations to encode rapidly varying stimuli and respond quickly to abrup...
This study examines the ability of neurons to track temporally varying inputs, namely by investigati...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
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...
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...
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...
The abilities of neuronal populations to encode rapidly varying stimuli and respond quickly to abrup...
The abilities of neuronal populations to encode rapidly varying stimuli and respond quickly to abrup...
This study examines the ability of neurons to track temporally varying inputs, namely by investigati...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...
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...
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...
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...
The abilities of neuronal populations to encode rapidly varying stimuli and respond quickly to abrup...
The abilities of neuronal populations to encode rapidly varying stimuli and respond quickly to abrup...
This study examines the ability of neurons to track temporally varying inputs, namely by investigati...
In the intact brain neurons are constantly exposed to intense synaptic activity. This heavy barrage ...