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  2. Subthreshold membrane potential oscillations - Wikipedia

    en.wikipedia.org/wiki/Subthreshold_membrane...

    Therefore, these subthreshold membrane potential oscillations do not trigger action potentials, since the firing of an action potential is an "all-or-nothing" response, and these oscillations do not allow for the depolarization of the neuron to reach the threshold needed, which is typically around -55 mV; [4] an "all-or-nothing" response refers ...

  3. Threshold potential - Wikipedia

    en.wikipedia.org/wiki/Threshold_potential

    The basis is that at a certain level of depolarization, when the currents are equal and opposite in an unstable manner, any further entry of positive charge generates an action potential. This specific value of depolarization (in mV) is otherwise known as the threshold potential.

  4. Depolarization - Wikipedia

    en.wikipedia.org/wiki/Depolarization

    Depolarization is essential to the function of many cells, communication between cells, and the overall physiology of an organism. Action potential in a neuron, showing depolarization, in which the cell's internal charge becomes less negative (more positive), and repolarization, where the internal charge returns to a more negative value.

  5. 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 ...

  6. Membrane potential - Wikipedia

    en.wikipedia.org/wiki/Membrane_potential

    Graph displaying an EPSP, an IPSP, and the summation of an EPSP and an IPSP. Graded membrane potentials are particularly important in neurons, where they are produced by synapses—a temporary change in membrane potential produced by activation of a synapse by a single graded or action potential is called a postsynaptic potential.

  7. Rheobase - Wikipedia

    en.wikipedia.org/wiki/Rheobase

    Rheobase in the Weiss formula is the slope of the graph. The x-intercept of the Weiss equation is equal to b x c , or rheobase times chronaxie. This equation suggests that a graph of threshold stimulus strength versus stimulus duration should show a decay toward zero as stimulus duration is increased, so the stimulus strength required to reach ...

  8. Excitatory synapse - Wikipedia

    en.wikipedia.org/wiki/Excitatory_synapse

    These neurotransmitters bind to receptors located on the postsynaptic membrane of the lower neuron, and, in the case of an excitatory synapse, may lead to a depolarization of the postsynaptic cell. An excitatory synapse is a synapse in which an action potential in a presynaptic neuron increases the probability of an action potential occurring ...

  9. Synaptic potential - Wikipedia

    en.wikipedia.org/wiki/Synaptic_potential

    Graph showing the effects of EPSPs and IPSPs on membrane potential. Synaptic potential refers to the potential difference across the postsynaptic membrane that results from the action of neurotransmitters at a neuronal synapse. [1] In other words, it is the “incoming” signal that a neuron receives.