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  2. Neural backpropagation - Wikipedia

    en.wikipedia.org/wiki/Neural_backpropagation

    Neural backpropagation is the phenomenon in which, after the action potential of a neuron creates a voltage spike down the axon (normal propagation), another impulse is generated from the soma and propagates towards the apical portions of the dendritic arbor or dendrites (from which much of the original input current originated).

  3. Action potential - Wikipedia

    en.wikipedia.org/wiki/Action_potential

    A typical action potential begins at the axon hillock [41] with a sufficiently strong depolarization, e.g., a stimulus that increases V m. This depolarization is often caused by the injection of extra sodium cations into the cell; these cations can come from a wide variety of sources, such as chemical synapses, sensory neurons or pacemaker ...

  4. Baclofen - Wikipedia

    en.wikipedia.org/wiki/Baclofen

    Baclofen, sold under the brand name Lioresal among others, is a medication used to treat muscle spasticity, such as from a spinal cord injury or multiple sclerosis. [8] [9] It may also be used for hiccups and muscle spasms near the end of life, [9] and off-label to treat alcohol use disorder [10] [11] or opioid withdrawal symptoms. [12]

  5. Hodgkin–Huxley model - Wikipedia

    en.wikipedia.org/wiki/Hodgkin–Huxley_model

    Alan Hodgkin and Andrew Huxley described the model in 1952 to explain the ionic mechanisms underlying the initiation and propagation of action potentials in the squid giant axon. [1] They received the 1963 Nobel Prize in Physiology or Medicine for this work.

  6. Soliton model in neuroscience - Wikipedia

    en.wikipedia.org/wiki/Soliton_model_in_neuroscience

    The soliton hypothesis in neuroscience is a model that claims to explain how action potentials are initiated and conducted along axons based on a thermodynamic theory of nerve pulse propagation. [1] It proposes that the signals travel along the cell's membrane in the form of certain kinds of solitary sound (or density ) pulses that can be ...

  7. Dendritic spike - Wikipedia

    en.wikipedia.org/wiki/Dendritic_spike

    Figure B. is a recording of an actual action potential N.B. Actual recordings of action potentials are often distorted compared to the schematic view because of variations in electrophysiological techniques used to make the recording. In neurophysiology, a dendritic spike refers to an action potential generated in the dendrite of a neuron ...

  8. Node of Ranvier - Wikipedia

    en.wikipedia.org/wiki/Node_of_Ranvier

    The action potential travels from one location in the cell to another, but ion flow across the membrane occurs only at the nodes of Ranvier. As a result, the action potential signal jumps along the axon, from node to node, rather than propagating smoothly, as they do in axons that lack a myelin sheath.

  9. Quantitative models of the action potential - Wikipedia

    en.wikipedia.org/wiki/Quantitative_models_of_the...

    Figure FHN: To mimick the action potential, the FitzHugh–Nagumo model and its relatives use a function g(V) with negative differential resistance (a negative slope on the I vs. V plot). For comparison, a normal resistor would have a positive slope, by Ohm's law I = GV, where the conductance G is the inverse of resistance G=1/R.