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  2. Node of Ranvier - Wikipedia

    en.wikipedia.org/wiki/Node_of_Ranvier

    Furthermore, Lambert et al. and Eshed et al. also indicates that neurofascin accumulates before Nav channels and is likely to have crucial roles in the earliest events associated with node of Ranvier formation. Thus, multiple mechanisms may exist and work synergistically to facilitate clustering of Nav channels at nodes of Ranvier.

  3. 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]

  4. Oligodendrocyte - Wikipedia

    en.wikipedia.org/wiki/Oligodendrocyte

    The myelin sheath is not continuous but is segmented along the axon's length at gaps known as the nodes of Ranvier. In the peripheral nervous system the myelination of axons is carried out by Schwann cells. [1] Oligodendrocytes are found exclusively in the CNS, which comprises the brain and spinal cord.

  5. Schwann cell - Wikipedia

    en.wikipedia.org/wiki/Schwann_cell

    In myelinated axons, Schwann cells form the myelin sheath. The sheath is not continuous. Individual myelinating Schwann cells cover about 1 mm of an axon [3] – equating to about 1000 Schwann cells along a 1-m length of the axon. The gaps between adjacent Schwann cells are called nodes of Ranvier.

  6. Dendrite - Wikipedia

    en.wikipedia.org/wiki/Dendrite

    Louis-Antoine Ranvier was the first to describe the gaps or nodes found on axons and for this contribution these axonal features are now commonly referred to as the Nodes of Ranvier. Santiago Ramón y Cajal, a Spanish anatomist, proposed that axons were the output components of neurons. [ 10 ]

  7. Action potential - Wikipedia

    en.wikipedia.org/wiki/Action_potential

    Myelin sheath reduces membrane capacitance and increases membrane resistance in the inter-node intervals, thus allowing a fast, saltatory movement of action potentials from node to node. [ l ] [ m ] [ n ] Myelination is found mainly in vertebrates , but an analogous system has been discovered in a few invertebrates, such as some species of shrimp .

  8. Myelinogenesis - Wikipedia

    en.wikipedia.org/wiki/Myelinogenesis

    Myelin is formed by oligodendrocytes in the central nervous system and Schwann cells in the peripheral nervous system.Therefore, the first stage of myelinogenesis is often defined as the differentiation of oligodendrocyte progenitor cells (OPCs) or Schwann cell progenitors into their mature counterparts, [4] followed by myelin formation around axons.

  9. Pathophysiology of nerve entrapment - Wikipedia

    en.wikipedia.org/wiki/Pathophysiology_of_nerve...

    The schwann cells are arranged in pattern such all parts of the axon are wrapped in schwann cells and successive schwann cells are separated by a very small distance. This separation gap is called a node of Ranvier . [ 3 ]