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An Ohio University researcher looks at how hearing loss affects our ability to isolate and locate sounds
By: David Forster
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ATHENS, Ohio (WOUB) — Creatures with two ears, such as ourselves, can isolate sounds and pinpoint their location with a high degree of accuracy, even in an environment filled with competing noises.
Mitch Day is an associate professor of biological sciences and head of the Auditory Neurophysiology Laboratory at Ohio University. His research focuses on how the brain actually processes sound and how hearing loss affects this ability.
Day sat down to speak with WOUB’s David Forster for “Modern Science.”
This interview has been edited for brevity and clarity.
On how we process sound
“When it comes to sound, the only thing that the neurons in our brains have access to is just the vibrating of two membranes, the ear drums in our ear. Ultimately, that sound that’s waggling the ear drums back and forth first gets transformed into a pattern of spikes of electrical activity. That’s the input to the brain. Then the brain takes those spikes and converts them into all the different characteristics of sound that we know.
“That’s the really complex part neuroscientists like me are trying to figure out, how that happens. We think of it as trying to crack a code, the neural code of sound.”
The brain can isolate different sounds processed at the same time
“It’s not only doing that, but it’s also segregating sound sources apart from each other. You could have that cricket chirping and the Beethoven Symphony playing at the same time, and you could easily tell the two apart and understand that there’s two separate sound sources that are being presented, and you can distinguish between those two.”
On why having two ears, and their design, is important to our hearing abilities
“We know now the specific cues that are used to localize sound have to do with comparisons between what’s happening at the two ears. There’s two cues that we use to try to pinpoint whether a

“If a sound is coming from my right, well, then it hits my right ear. A split second, then it hits my left ear. That actually ends up being a really potent cue to tell us that the sound is coming from my right-hand side.
“Another thing is that when that sound is coming from the right, it’s more intense in your right ear than it is in your left ear because your head acts as an object that acoustically shadows some of that sound that’s able to reach your left ear. There ends up being what we call a level difference between the two ears. If a sound is coming from straight in front of us, there would be no time difference and there would be no level difference.
“Whether something’s coming from above you or from straight in front of you or from behind you ends up being kind of complex. It actually has to do with the shape of your ears. What happens is that the sound ricochets off of these different ridges within your your outer ear. It’s different for sound straight ahead, as opposed to sounds that are right above you, as opposed to sounds that are behind you.”
On how hearing loss affects our ability to pinpoint the location of sounds
The clinical audiology community is recognizing this type of hearing loss more
On how researchers are addressing hidden hearing loss
The first draft of the transcripts used for this story was created in Adobe Podcast, which includes an AI transcription tool. A WOUB news editor then reviewed, corrected and reformatted the transcript before publication.
