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  2. Saltatory conduction - Wikipedia

    en.wikipedia.org/wiki/Saltatory_conduction

    Myelinated axons only allow action potentials to occur at the unmyelinated nodes of Ranvier that occur between the myelinated internodes. It is by this restriction that saltatory conduction propagates an action potential along the axon of a neuron at rates significantly higher than would be possible in unmyelinated axons (150 m/s compared from 0.5 to 10 m/s). [1]

  3. Node of Ranvier - Wikipedia

    en.wikipedia.org/wiki/Node_of_Ranvier

    Saltatory conduction provides one advantage over conduction that occurs along an axon without myelin sheaths. This is that the increased speed afforded by this mode of conduction assures faster interaction between neurons. On the other hand, depending on the average firing rate of the neuron, calculations show that the energetic cost of ...

  4. Myelin - Wikipedia

    en.wikipedia.org/wiki/Myelin

    Myelin's best known function is to increase the rate at which information, encoded as electrical charges, passes along the axon's length. Myelin achieves this by eliciting saltatory conduction. [1] Saltatory conduction refers to the fact that electrical impulses 'jump' along the axon, over long myelin sheaths, from one node of Ranvier to the next.

  5. Schwann cell - Wikipedia

    en.wikipedia.org/wiki/Schwann_cell

    The action potential jumps from node to node, in a process called saltatory conduction, which can increase conduction velocity up to 10 times, without an increase in axonal diameter. In this sense, Schwann cells are the PNS's analogues of the central nervous system's oligodendrocytes. However, unlike oligodendrocytes, each myelinating Schwann ...

  6. Axolemma - Wikipedia

    en.wikipedia.org/wiki/Axolemma

    This difference in charge is referred to as the resting membrane potential – which is measured at -70mV. [4] The opening of channels within the axolemma, allows for Na + to flow down its concentration gradient, and into the cell. Na + is a positively charge ion, so the influx on Na + causes the membrane potential to move toward zero.

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  8. Action potential - Wikipedia

    en.wikipedia.org/wiki/Action_potential

    In nature, myelinated segments are generally long enough for the passively propagated signal to travel for at least two nodes while retaining enough amplitude to fire an action potential at the second or third node. Thus, the safety factor of saltatory conduction is high, allowing transmission to bypass nodes in case of injury. However, action ...

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