Researchers at NYU Abu Dhabi and Cleveland Clinic Abu Dhabi have developed a tiny injectable device that could offer a new way to treat chronic pain and neurological disorders without the need for surgery.
The device, about the size of a small seed, can be injected into the body using a standard needle and placed near a target nerve. Once in position, it delivers controlled electrical signals that influence how the nerve behaves. It is powered wirelessly from outside the body, allowing doctors or patients to adjust its activity in real time.
The research, published in Science Advances, offers an alternative approach that combines precision with minimal invasiveness. The new technology complements existing treatment options, which may include medical implants or medications depending on the patient’s condition and needs.
“This work represents a shift in how we think about treating nerve-related conditions,” said Prof. Khalil Ramadi, Assistant Professor of Bioengineering at NYU Abu Dhabi and NYU Tandon and the study’s senior author. “By creating a device that can be injected rather than surgically implanted, we are making these therapies simpler, safer, and more accessible, while still maintaining precise control over nerve activity.”
The device can be tracked using standard medical imaging, such as ultrasound and CT scans, allowing for accurate placement and monitoring. Once deployed, it delivers programmable electrical stimulation, enabling tailored treatments based on patient needs.
“This collaboration with NYU Abu Dhabi reflects our commitment to advancing innovative, clinically relevant research that translates into meaningful improvements in patient care,” said Dr. Sawsan Abdel-Razig, Chief Academic Officer at Cleveland Clinic Abu Dhabi. “By bringing together multidisciplinary expertise, this work highlights how academic partnerships can accelerate the development of safer, less invasive therapies and expand access to advanced treatments for patients.”
In laboratory and preclinical testing, the device demonstrated precise control over nerve stimulation and consistent performance under realistic conditions. It also successfully activated nerves in vivo, confirming its potential for real-world applications.
“This technology has the potential to bridge the gap between non-invasive therapies and traditional implants,” said Dr. Mohamed Elsherif, Research Associate at NYU Abu Dhabi and first author of the study. “It opens the door to treatments that are both effective and easy to deliver, which could significantly improve patient care.”
By reducing the need for major procedures and simplifying how advanced therapies are delivered, the device could make treatment more accessible while lowering risks and recovery times.

UAE-backed solar project boosts healthcare in India
UAE, Greece delegations call for keeping Strait of Hormuz open
FTA refunds AED353.5 million to 4,000 UAE nationals building homes in 2026
UAE expresses solidarity with India over flood victims
UAE leaders congratulate new UK PM Andy Burnham
UAE strongly condemns renewed Iranian attacks on Bahrain and Kuwait
UAE, Venezuela discuss strengthening bilateral relations
H.H. Sheikh Abdullah, Jordan's FM discuss regional developments
Emiratis working in UAE private sector exceeds 190,000 in 2026
UAE sends critical aid to Venezuela as death toll from quakes rises to over 5,000
Abu Dhabi completes 12 digital disease registries to boost early diagnosis
UAE condemns renewed Iranian attacks on Bahrain, Kuwait, Jordan
Five more UAE aid convoys enter Gaza carrying 980 tonnes of relief aid
RTA approves five-year plan to expand soft mobility network
UAE calls for immediate de-escalation following recent regional developments
UAE Public Prosecution expands investigation into false Dubai explosion report
UAE leaders mark Union Pledge Day by renewing commitment to nation's unity
UAE delivers medical convoy to WHO in Gaza
UAE pledges $5 million to FIFA Global Citizen Education Fund
Reuters issues apology over retracted story of Dubai explosions
