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  2. Synaptic gating - Wikipedia

    en.wikipedia.org/wiki/Synaptic_gating

    Once the gate is open, an excitatory neuron can cause the bistable neuron to further depolarize and reach threshold causing and action potential to occur. If the gatekeeper does not shift the bistable neuron from down to up, the excitatory neuron will not be able to fire an action potential in the bistable neuron.

  3. Synaptic potential - Wikipedia

    en.wikipedia.org/wiki/Synaptic_potential

    The first phase of synaptic potential generation is the same for both excitatory and inhibitory potentials. As an action potential travels through the presynaptic neuron, the membrane depolarization causes voltage-gated calcium channels to open.

  4. Phase resetting in neurons - Wikipedia

    en.wikipedia.org/wiki/Phase_resetting_in_neurons

    Neurons firing in synchrony in circadian pacemaker cells. Phase resetting in neurons is a behavior observed in different biological oscillators and plays a role in creating neural synchronization as well as different processes within the body. Phase resetting in neurons is when the dynamical behavior of an oscillation is shifted. This occurs ...

  5. Excitatory synapse - Wikipedia

    en.wikipedia.org/wiki/Excitatory_synapse

    Neurons form networks through which nerve impulses travels, each neuron often making numerous connections with other cells of neurons. These electrical signals may be excitatory or inhibitory, and, if the total of excitatory influences exceeds that of the inhibitory influences, the neuron will generate a new action potential at its axon hillock ...

  6. Excitatory postsynaptic potential - Wikipedia

    en.wikipedia.org/wiki/Excitatory_postsynaptic...

    EPSPs are usually recorded using intracellular electrodes. The extracellular signal from a single neuron is extremely small and thus next to impossible to record in the human brain. However, in some areas of the brain, such as the hippocampus, neurons are arranged in such a way that they all receive synaptic inputs in the same area. Because ...

  7. Neuron - Wikipedia

    en.wikipedia.org/wiki/Neuron

    Neurons communicate with other cells via synapses, which are specialized connections that commonly use minute amounts of chemical neurotransmitters to pass the electric signal from the presynaptic neuron to the target cell through the synaptic gap. Neurons are the main components of nervous tissue in all animals except sponges and placozoans.

  8. Neurotransmission - Wikipedia

    en.wikipedia.org/wiki/Neurotransmission

    Neurons form complex biological neural networks through which nerve impulses (action potentials) travel. Neurons do not touch each other (except in the case of an electrical synapse through a gap junction); instead, neurons interact at close contact points called synapses. A neuron transports its information by way of an action potential.

  9. Postsynaptic potential - Wikipedia

    en.wikipedia.org/wiki/Postsynaptic_potential

    Neurons have a resting potential of about −70 mV. When a neurotransmitter binds to a postsynaptic receptor, this can lead to the opening or closing of ion channels, allowing ions to flow inside or outside of the cell, changing the membrane potential.