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  2. Axon terminal - Wikipedia

    en.wikipedia.org/wiki/Axon_terminal

    Axon terminals (also called terminal boutons, synaptic boutons, end-feet, or presynaptic terminals) are distal terminations of the branches of an axon. An axon, also called a nerve fiber, is a long, slender projection of a nerve cell that conducts electrical impulses called action potentials away from the neuron's cell body to transmit those ...

  3. Excitatory synapse - Wikipedia

    en.wikipedia.org/wiki/Excitatory_synapse

    Glutamate is a small, amino acid neurotransmitter, and is the primary excitatory neurotransmitter at almost all synapses in the central nervous system. This molecule binds multiple postsynaptic receptors including the NMDA receptor, AMPA receptor, and kainate receptors.

  4. Neurotransmission - Wikipedia

    en.wikipedia.org/wiki/Neurotransmission

    Neurotransmission (Latin: transmissio "passage, crossing" from transmittere "send, let through") is the process by which signaling molecules called neurotransmitters are released by the axon terminal of a neuron (the presynaptic neuron), and bind to and react with the receptors on the dendrites of another neuron (the postsynaptic neuron) a ...

  5. Synapse - Wikipedia

    en.wikipedia.org/wiki/Synapse

    In the nervous system, a synapse [1] is a structure that allows a neuron (or nerve cell) to pass an electrical or chemical signal to another neuron or a target effector cell. Synapses can be classified as either chemical or electrical, depending on the mechanism of signal transmission between neurons.

  6. Synaptic vesicle - Wikipedia

    en.wikipedia.org/wiki/Synaptic_vesicle

    The area in the axon that holds groups of vesicles is an axon terminal or "terminal bouton". Up to 130 vesicles can be released per bouton over a ten-minute period of stimulation at 0.2 Hz. [ 1 ] In the visual cortex of the human brain, synaptic vesicles have an average diameter of 39.5 nanometers (nm) with a standard deviation of 5.1 nm.

  7. Synaptic potential - Wikipedia

    en.wikipedia.org/wiki/Synaptic_potential

    This difference across the membrane is what the neuron uses to actually do the work of sending messages from the axon hillock of the neuron all the way down to the presynaptic terminal and then on to the postsynaptic terminal because of the release of neurotransmitter into the synaptic cleft. [3]

  8. Reuptake - Wikipedia

    en.wikipedia.org/wiki/Reuptake

    A synapse during re-uptake. Note that some neurotransmitters are lost and not reabsorbed. Reuptake is the reabsorption of a neurotransmitter by a neurotransmitter transporter located along the plasma membrane of an axon terminal (i.e., the pre-synaptic neuron at a synapse) or glial cell after it has performed its function of transmitting a neural impulse.

  9. Synaptic fatigue - Wikipedia

    en.wikipedia.org/wiki/Synaptic_fatigue

    This is a diagram of a typical central nervous system synapse. The presynaptic and postsynaptic neuron are on top and bottom, respectively. Synaptic vesicles are represented as tan spheres and postsynaptic receptors are dark green. If the presynaptic vesicles are released at a faster rate into the synaptic cleft than re-uptake can recycle them ...