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  2. Schaffer collateral - Wikipedia

    en.wikipedia.org/wiki/Schaffer_collateral

    Schaffer collaterals are axon collaterals given off by CA3 pyramidal cells in the hippocampus.These collaterals project to area CA1 of the hippocampus [1] and are an integral part of memory formation and the emotional network of the Papez circuit, and of the hippocampal trisynaptic loop.

  3. Axolemma - Wikipedia

    en.wikipedia.org/wiki/Axolemma

    In neuroscience, the axolemma (from Greek lemma 'membrane, envelope', and 'axo-' from axon [1]) is the cell membrane of an axon, [1] the branch of a neuron through which signals (action potentials) are transmitted. The axolemma is a three-layered, bilipid membrane. Under standard electron microscope preparations, the structure is approximately ...

  4. Axon guidance - Wikipedia

    en.wikipedia.org/wiki/Axon_guidance

    Axon guidance (also called axon pathfinding) is a subfield of neural development concerning the process by which neurons send out axons to reach their correct targets. Axons often follow very precise paths in the nervous system, and how they manage to find their way so accurately is an area of ongoing research.

  5. Perforant path - Wikipedia

    en.wikipedia.org/wiki/Perforant_path

    In mice, the projection to CA1, and the subiculum all come primarily from EC layer III. [citation needed]According to Suh et al. (2011 Science 334:1415) the projection to CA3 and dentate gyrus in mice is primarily from layer II of entorhinal cortex, and forms a trisynaptic path with hippocampus (dentate gyrus to CA3 to CA1), distinguished from the direct (monosynaptic) perforant path from ...

  6. Growth cone - Wikipedia

    en.wikipedia.org/wiki/Growth_cone

    Established collateral branches, like the main axon, exhibit a growth cone and develop independently of the main axon tip. Overall, axon elongation is the product of a process known as tip growth. In this process, new material is added at the growth cone while the remainder of the axonal cytoskeleton remains stationary.

  7. Oligodendrocyte progenitor cell - Wikipedia

    en.wikipedia.org/wiki/Oligodendrocyte_progenitor...

    Multiple pathways contribute to oligodendrocyte branching, but the exact molecular process by which oligodendrocytes extend and wrap around multiple axons remains incompletely understood. [28] Laminin , a component of the extracellular matrix , plays an important role in regulating oligodendrocyte production.

  8. Node of Ranvier - Wikipedia

    en.wikipedia.org/wiki/Node_of_Ranvier

    Since an axon can be unmyelinated or myelinated, the action potential has two methods to travel down the axon. These methods are referred to as continuous conduction for unmyelinated axons, and saltatory conduction for myelinated axons. Saltatory conduction is defined as an action potential moving in discrete jumps down a myelinated axon.

  9. Axon - Wikipedia

    en.wikipedia.org/wiki/Axon

    An axon can divide into many branches called telodendria (Greek for 'end of tree'). At the end of each telodendron is an axon terminal (also called a terminal bouton or synaptic bouton, or end-foot). [20] Axon terminals contain synaptic vesicles that store the neurotransmitter for release at the synapse. This makes multiple synaptic connections ...