16.17
An action potential has three main phases: depolarization, repolarization, and hyperpolarization.
The depolarizing phase begins after a graded potential or a stimulus triggers the axon membrane to depolarize above a threshold.
This triggers the voltage-gated sodium channels to open rapidly. The resulting influx of sodium ions increases the membrane potential that peaks at +30mV.
Shortly after this, the sodium channels inactivate, preventing further sodium influx. The voltage-gated potassium channels are now open, causing an efflux of potassium ions.
This phase is called the repolarizing phase because the efflux of positive ions decreases the membrane potential.
Due to a slight delay in the closing of the potassium channel, the membrane potential continues past the resting membrane voltage, causing a little dip. This phase is called the hyperpolarization phase.
The action of sodium-potassium ATPase pumps then restores the resting membrane potential.
Once an action potential is generated, the axon cannot initiate another action potential for a brief time known as the refractory period. It ensures the unidirectional flow of nerve impulses and prevents neurons from firing continuously.
The action potential is a complex electrical event that occurs in excitable cells, such as neurons and muscle cells. It consists of several distinct p…
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