<p>A) Transmembrane potential (<i>V</i><sub><i>m</i></sub>) recorded during the action potential upstroke from six isolated rabbit cells from [<a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1005087#pcbi.1005087.ref043" target="_blank">43</a>]. B) Current-voltage (I-V) relationship plotted as <i>I</i><sub><i>Na</i></sub> (models: lines) or (experiments: ●) versus <i>V</i><sub><i>m</i></sub>. C) Predicted <i>V</i><sub><i>m</i></sub> signals from models (lines) and average from experiments (●) during the upstroke.</p
International audienceNeuronal response properties are typically probed by intracellular measurement...
<p><b>A.</b> Transmembrane potential for the last S1 beat during S1 pacing. <b>B.</b> APD restitutio...
<p>(A)–(G) Comparison between the experimental observation (blue) and the model prediction (orange) ...
<p><b>a</b>, Typical examples of AP upstrokes (top) and their dV/dt's (bottom). <b>b</b>, Current-vo...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
<p>Mean±SEM, ‘n’ indicates number of cells measured. V<sub>1/2</sub>, membrane potential for half-ma...
<p>Simulations of membrane potential (blue curves) and habituative transmitter (red curves) traces i...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
<p><b>A,</b> Three different action potentials during the rising phase. Vertical arrows depict the p...
This tool represents an implementation of a rabbit action potential model derived from high-fidelity...
Neuronal response properties are typically probed by intracellular measurements of current-voltage (...
<p><b>A,</b> Three action potentials (clipped) recorded from a TRN neuron are shown with the membran...
Models of AN, N and NH action potentials Models were developed for the rabbit, because of the relati...
International audienceNeuronal response properties are typically probed by intracellular measurement...
<p><b>A.</b> Transmembrane potential for the last S1 beat during S1 pacing. <b>B.</b> APD restitutio...
<p>(A)–(G) Comparison between the experimental observation (blue) and the model prediction (orange) ...
<p><b>a</b>, Typical examples of AP upstrokes (top) and their dV/dt's (bottom). <b>b</b>, Current-vo...
Computational models for cardiomyocyte action potentials (AP) often make use of a large parameter se...
<p>Mean±SEM, ‘n’ indicates number of cells measured. V<sub>1/2</sub>, membrane potential for half-ma...
<p>Simulations of membrane potential (blue curves) and habituative transmitter (red curves) traces i...
We evaluated transmembrane potential changes at the ends of isolated rabbit ventricular myocytes dur...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
<p><b>A,</b> Three different action potentials during the rising phase. Vertical arrows depict the p...
This tool represents an implementation of a rabbit action potential model derived from high-fidelity...
Neuronal response properties are typically probed by intracellular measurements of current-voltage (...
<p><b>A,</b> Three action potentials (clipped) recorded from a TRN neuron are shown with the membran...
Models of AN, N and NH action potentials Models were developed for the rabbit, because of the relati...
International audienceNeuronal response properties are typically probed by intracellular measurement...
<p><b>A.</b> Transmembrane potential for the last S1 beat during S1 pacing. <b>B.</b> APD restitutio...
<p>(A)–(G) Comparison between the experimental observation (blue) and the model prediction (orange) ...