<p>Left panel: Spike trains induced in a TCR cell by frozen noise with identical amplitude and various DC offsets; trace is a 3 s extract from a standard 300 s recording. Top: example trace at −50 mV. Bottom: example trace at −80 mV. Vertical bars in the panels in between mark the detected spikes in the 3 recorded replicates at 4 levels of depolarization, from top to bottom: −50, −60, −70 and −80 mV. The neuron responds earlier at more depolarized membrane potentials. Middle panel: 100 ms zoom of a single event starting at 1850 ms (zoom indicated in the left panel). Top and bottom show the event at −50 mV and −80 mV. Right panel: Cross-correllograms between a reference spike train at −80 mV and the spike trains obtained in the same cell at ...
<p>Electrophysiological properties of neurons derived from postnatal murine neurospheres. A: Exempla...
<p>(A) Spike trains triggered by four subsequent blue stimulation pulses. Depolarization was allowed...
<p>Coherence (left column) and phase (right column) between the input current and the timing of thre...
<p>The same computer generated frozen noise was injected into the TCR cell (solid line) and in the f...
<p>Impedance of the TCR neuron calculated as the amplitude of the transfer function between current ...
<p>Left panels: Spike train recorded at a membrane state of −80 mV. The ISI histogram (top row) show...
Mammalian thalamocortical relay (TCR) neurons switch their firing activity between a tonic spiking a...
<p><b>A,</b> Three action potentials (clipped) recorded from a TRN neuron are shown with the membran...
Item does not contain fulltextMammalian thalamocortical relay (TCR) neurons switch their firing acti...
Mammalian thalamocortical relay (TCR) neurons switch their firing activity between a tonic spiking a...
The reliability and precision of the timing of spikes in a spike train is an important aspect of neu...
<p>(A) Mean voltage response (<i>n</i> = 4 cells) to a 30 Hz spike train. A hyperpolarizing current ...
<p>A) Experimental design of a signal immersed in noise paradigm. Current for injection is composed ...
<p>A: At equivalent membrane potentials, the subthreshold membrane oscillations of NVmes cells expos...
<p><b>A,</b> In vivo intracellular low-threshold burst discharges of a TRN neuron recorded during th...
<p>Electrophysiological properties of neurons derived from postnatal murine neurospheres. A: Exempla...
<p>(A) Spike trains triggered by four subsequent blue stimulation pulses. Depolarization was allowed...
<p>Coherence (left column) and phase (right column) between the input current and the timing of thre...
<p>The same computer generated frozen noise was injected into the TCR cell (solid line) and in the f...
<p>Impedance of the TCR neuron calculated as the amplitude of the transfer function between current ...
<p>Left panels: Spike train recorded at a membrane state of −80 mV. The ISI histogram (top row) show...
Mammalian thalamocortical relay (TCR) neurons switch their firing activity between a tonic spiking a...
<p><b>A,</b> Three action potentials (clipped) recorded from a TRN neuron are shown with the membran...
Item does not contain fulltextMammalian thalamocortical relay (TCR) neurons switch their firing acti...
Mammalian thalamocortical relay (TCR) neurons switch their firing activity between a tonic spiking a...
The reliability and precision of the timing of spikes in a spike train is an important aspect of neu...
<p>(A) Mean voltage response (<i>n</i> = 4 cells) to a 30 Hz spike train. A hyperpolarizing current ...
<p>A) Experimental design of a signal immersed in noise paradigm. Current for injection is composed ...
<p>A: At equivalent membrane potentials, the subthreshold membrane oscillations of NVmes cells expos...
<p><b>A,</b> In vivo intracellular low-threshold burst discharges of a TRN neuron recorded during th...
<p>Electrophysiological properties of neurons derived from postnatal murine neurospheres. A: Exempla...
<p>(A) Spike trains triggered by four subsequent blue stimulation pulses. Depolarization was allowed...
<p>Coherence (left column) and phase (right column) between the input current and the timing of thre...