00:01
The type of sensory loss will be sensory neural hearing loss.
00:05
Sensory neural hearing loss.
00:10
Sensory neural hearing loss will be because this loud noise that the person is exposed to will damage the hair cells of the ear or the cochlea in the ear.
00:25
So, it occurs due to the damage or dysfunction of the hair.
00:29
In this case, the hair cells are permanently damaged.
00:31
So, permanent damage will lead to hearing loss.
00:37
So, the second answer about the rin test is going to be that it will show a negative result.
00:45
Negative result as in the air conduction will be less effective than the bone conduction.
00:54
Which means that if a tuning fork is placed near the ear, then that would be less effective than placing the tuning fork on the mastoid bone.
01:11
So, this is going to happen because the hair cells reduce the perception of sound.
01:19
In the weber test, lateralization towards the unaffected ear will be observed.
01:33
This means that the individual would perceive the sound from the tuning fork as louder or more pronounced in the ear that has better hearing.
01:46
So, the tuning fork sound is better in the unaffected ear.
01:54
Which has not been injured...