Advancing cochlear implants using AI
At the intersection of surgery, engineering and artificial intelligence, Agrawal is reshaping how doctors understand and ultimately restore hearing. His research focuses on the cochlea, the spiral cavity of the inner ear where cochlear implants translate sounds into electrical signals for the brain to process as sound. Cochlear implants have returned hearing to hundreds of thousands of people worldwide, yet outcomes vary widely from one patient to another. One reason is that conventional medical imaging cannot clearly reveal the delicate internal anatomy where implant electrodes must be placed and later programmed. To address that challenge, Agrawal partnered with Hanif Ladak, professor of engineering and medical biophysics, to establish Western’s Auditory Biophysics Laboratory. Here, Agrawal, Ladak and their team are training AI systems to reconstruct the cochlea’s hidden anatomy from standard CT scans. By giving surgeons a detailed map of each patient’s inner ear, their approach improves not only the precision of surgery, but the post-operative mapping and tuning of the implant as well. “Hearing connects us to language, to music, to each other,” said Agrawal, chair of otolaryngology – head and neck surgery at Western’s Schulich School of Medicine & Dentistry and department head at London Health Sciences Centre and St. Joseph’s Health Care London. “If we can tailor treatment to every individual, from surgery to programming, we can give patients not just hearing, but a richer way of experiencing the world.”
Dr. Sumit Agrawal reviews a customized cochlear implant designed to improve hearing for patient Taryn Armstrong. (Western Communications)












