
People with misophonia or hyperacusis are often told that their brains may be “overexcitable” or chemically unbalanced. A new brain imaging study helps clarify this idea by asking a very specific question:
Are these sound intolerance conditions caused by abnormal levels of key brain chemicals?
In late 2025, a research team led by Jamie Ward investigated the brain chemistry of people with misophonia and hyperacusis using advanced magnetic resonance spectroscopy.
Looking directly at brain chemistry
The study focused on two important brain chemicals:
These chemicals were measured in:
Importantly, the study carefully excluded people with other conditions such as tinnitus, migraine, or autism, so the findings could be interpreted more clearly.
What the researchers expected to find
Based on existing theories, the researchers expected that people with decreased sound tolerance might show:
This would support the idea that misophonia or hyperacusis is caused by a chemical imbalance leading to excessive brain reactivity.
What the study actually found
The results were surprising and important.
The researchers found no significant differences in glutamate or GABA levels between people with misophonia, people with hyperacusis, and those without sound sensitivity. This was true across all brain regions examined.
Advanced statistical analyses suggested that these were not weak or inconclusive findings, but robust evidence that large chemical differences were unlikely.
Why this matters
These findings challenge a simple explanation of sound intolerance as a problem caused by abnormal levels of brain chemicals. Instead, they suggest that misophonia and hyperacusis are not driven by static neurochemical imbalances in the auditory or emotional brain regions studied.
This does not mean the brain is not involved. Rather, it suggests that:
What this means for treatment
This study helps explain why treatments aimed purely at altering brain chemistry, such as medication, have shown limited and inconsistent benefit for misophonia and hyperacusis.
It also supports approaches that focus on:
These approaches work with how the brain responds to sound, rather than trying to correct a chemical imbalance that may not exist.
What this means for patients
For people living with misophonia or hyperacusis, this research offers reassurance:
At Hashir Tinnitus Clinic, care for misophonia and hyperacusis is guided by this broader understanding of brain processing, focusing on personalised assessment and evidence-based support rather than one-size-fits-all explanations.
Learn more
If you would like to read the original open-access research paper, it is available here:
Ward, J., Agbude, R., Smees, R., Simner, J., & Ronen, I. (2025). The neurochemistry of decreased sound tolerance: A magnetic resonance spectroscopy study of misophonia and hyperacusis. Hearing Research.
https://doi.org/10.1016/j.heares.2025.109440
If you would like to discuss how this research relates to your own experience of sound sensitivity, we are always happy to explore this with you during an appointment.