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When these hair cells are moved, they send an electrical impulse through the cochlear nerve.
AP are the neural potentials generated by the cochlear nerve.
They then depolarise and send impulses to the brain via the cochlear nerve.
A variety of techniques have been used to monitor the cochlear nerve when hearing preservation is desired.
The acoustic tubercle is a nuclei on the end of the cochlear nerve.
The cochlear nerve is lateral to the vestibular root.
In humans, the number of nerve fibers within the cochlear nerve averages around 30,000.
The fibers connecting the spiral ganglion with the central nervous system form the cochlear nerve.
The cochlear nerve sends these impulses on to the cerebral cortex, where the brain interprets them.
This nerve is called the vestibular cochlear nerve.
From there, through the cochlear nerve, axons reach the superior olivary complex of both sides.
The cochlear nerve travels away from the cochlea of the inner ear where it starts as the spiral ganglia.
Surgical removal, then, is more likely to directly injure the cochlear nerve or interfere with cochlear blood supply.
He focused on the physiology of the inner ear, investigating how neurological impulses are transmitted to the brain via the cochlear nerve.
Consequently, the acoustic tumor must have originated from the inferior vestibular nerve, which is directly adjacent to the cochlear nerve.
The cochlear implant bypasses the hair cells and stimulates the cochlear nerves directly using electrical impulses.
The cell bodies of the cochlear nerve lie within the central aspect of the cochlea and are collectively known as the spiral ganglion.
Information is brought to the CN from the ipsilateral cochlea via the cochlear nerve.
The vestibular nerves are generally sacrificed, and unless hearing is to be preserved, the cochlear nerve is sacrificed as well.
The auditory nerve, also called the cochlear nerve, then transmits action potentials to the central auditory nervous system.
When a louder sound is heard, more hair cells are stimulated and the intensity of firing of axons in the cochlear nerve is increased.
Cochlear implants artificially stimulate the cochlear nerve by providing an electric impulse substitution for the firing of hair cells.
Recent research, reported in 2012 achieved growth of cochlear nerve cells resulting in hearing improvements in gerbils, using stem cells.
The cochlear nerve runs antero-inferiorly and the inferior vestibular nerve runs postero-inferiorly.
The vestibular nerve is one of the two branches of the Vestibulocochlear nerve (the cochlear nerve being the other).