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Origin of the kink of somatic action potentials

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Kink in the action potential. Patch clamp recordings (red) from a cortical pyramidal cell and action potential produced by a Hodgkin Huxley type model (black). Left: Voltage-time relationship. Right: Phase plot of the same traces as in the left (dV/dt vs. V). Note, in both representations the onset of the action potential is much faster for the experimental recordings (red) than for the model (black).
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Figure 1: Kink in the action potential. Patch clamp recordings (red) from a cortical pyramidal cell and action potential produced by a Hodgkin Huxley type model (black). Left: Voltage-time relationship. Right: Phase plot of the same traces as in the left (dV/dt vs. V). Note, in both representations the onset of the action potential is much faster for the experimental recordings (red) than for the model (black).


Origin of the kink of somatic action potentials
Kink in the action potential. Patch clamp recordings (red) from a cortical pyramidal cell and action potential produced by a Hodgkin Huxley type model (black). Left: Voltage-time relationship. Right: Phase plot of the same traces as in the left (dV/dt vs. V). Note, in both representations the onset of the action potential is much faster for the experimental recordings (red) than for the model (black).
© Copyright Policy - open-access
Related In: Results  -  Collection

License 1 - License 2
Show All Figures
getmorefigures.php?uid=PMC4697647&req=5

Figure 1: Kink in the action potential. Patch clamp recordings (red) from a cortical pyramidal cell and action potential produced by a Hodgkin Huxley type model (black). Left: Voltage-time relationship. Right: Phase plot of the same traces as in the left (dV/dt vs. V). Note, in both representations the onset of the action potential is much faster for the experimental recordings (red) than for the model (black).

View Article: PubMed Central - HTML

No MeSH data available.