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  2. Action potential - Wikipedia

    en.wikipedia.org/wiki/Action_potential

    As an action potential (nerve impulse) travels down an axon there is a change in electric polarity across the membrane of the axon. In response to a signal from another neuron, sodium- (Na +) and potassium- (K +)–gated ion channels open and close as the membrane reaches its threshold potential.

  3. Cardiac action potential - Wikipedia

    en.wikipedia.org/wiki/Cardiac_action_potential

    Ionic pumps as discussed above, like the sodium-calcium exchanger and the sodium-potassium pump restore ion concentrations back to balanced states pre-action potential. This means that the intracellular calcium is pumped out, which was responsible for cardiac myocyte contraction.

  4. Membrane potential - Wikipedia

    en.wikipedia.org/wiki/Membrane_potential

    The ion pump most relevant to the action potential is the sodiumpotassium pump, which transports three sodium ions out of the cell and two potassium ions in. [13] [14] As a consequence, the concentration of potassium ions K + inside the neuron is roughly 30-fold larger than the outside concentration, whereas the sodium concentration outside ...

  5. Potassium in biology - Wikipedia

    en.wikipedia.org/wiki/Potassium_in_biology

    The cell membrane potential created by potassium and sodium ions allows the cell to generate an action potential—a "spike" of electrical discharge. The ability of cells to produce electrical discharge is critical for body functions such as neurotransmission, muscle contraction, and heart function. [22]

  6. Sodium channel - Wikipedia

    en.wikipedia.org/wiki/Sodium_channel

    Ligand-gated sodium channels, on the other hand, create the change in the membrane potential in the first place, in response to the binding of a ligand to it. Leak sodium channels additionally contribute to action potential regulation by modulating the resting potential (and in turn, the excitability) of a cell. [35]

  7. Potassium channel - Wikipedia

    en.wikipedia.org/wiki/Potassium_channel

    In excitable cells, such as neurons, the delayed counterflow of potassium ions shapes the action potential. By contributing to the regulation of the cardiac action potential duration in cardiac muscle, malfunction of potassium channels may cause life-threatening arrhythmias. Potassium channels may also be involved in maintaining vascular tone.

  8. Hyperpolarization (biology) - Wikipedia

    en.wikipedia.org/wiki/Hyperpolarization_(biology)

    However, potassium ions naturally move out of the cell and if the original depolarization event was not significant enough then the neuron does not generate an action potential. If all the sodium channels are open, however, then the neuron becomes ten times more permeable to sodium than potassium, quickly depolarizing the cell to a peak of +40 ...

  9. Hodgkin–Huxley model - Wikipedia

    en.wikipedia.org/wiki/Hodgkin–Huxley_model

    The membrane potential depends upon the maintenance of ionic concentration gradients across it. The maintenance of these concentration gradients requires active transport of ionic species. The sodium-potassium and sodium-calcium exchangers are the best known of these.