The action potential has 5 main phases:
1) stimulation/rising phase - depolarization caused by influx of sodium ions at the axon hillock; potential increases from a resting potential of -70 mV2) peak phase - depolarization and membrane potential reaches a peak, with sodium channels open maximally, at about +40 mV
3) falling phase - potassium channels open in response, causing a subsequent reduction in membrane potential, and the neuron begins to repolarize
4) hyperpolarization/undershoot phase - more potassium channels stay open after sodium channels close, causing a hyperpolarization of the neuronal membrane, bringing the potential down below its initial resting potential (below -70 mV)
5) refractory phase - potassium channels begin to close, allowing the membrane potential to revert back to the resting potential of -70 mV; during this phase, the probability of the nerve being able to refire is extremely low, thus allowing for a delay between action potentials
the spinal nerve sends nerve impulses away from the CNS
Neuron
Impulses carried by the olfactory nerve are for the sense of smell.
Optic Nerve
The most rapid nerve impulses are carried by myelinated nerve fibers, which have a fatty sheath called myelin that enables faster signal transmission. These fast nerve impulses are crucial for quick reflex actions and communication between different parts of the body. Unmyelinated fibers are slower in transmitting nerve impulses compared to myelinated fibers.
the spinal nerve sends nerve impulses away from the CNS
nerve impulses
Nerve impulses are electrical signals.
vagus nerve
Nerve impulses are measured in MiliVolts (mv)
No, that is just nerve impulses
Neuron
No, axons carry impulses away from the nerve cell body.
Impulses carried by the olfactory nerve are for the sense of smell.
optic nerve
Olfactory Nerve
Optic Nerve