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Research team receives start-up funding to develop first-of-its-kind "artificial muscle."
February 11, 2019
By: University of Delaware
A team of researchers from the University of Delaware has received nearly $200,000 in start-up funding to develop a motorized ankle foot device for children with cerebral palsy (CP) that includes a novel artificial muscle. The brace is the first lower extremity device designed to correct alignment or provide support using soft muscle-like “smart materials,” known as dielectric elastomer actuators, that contract in response to electric current. Made from off-the-shelf elastic materials, these artificial muscles closely mimic the function of the body’s skeletal muscle and can help children with CP that struggle to complete a range of motion under their own power. The device is lightweight, compact and noiseless, too, reducing the size of the orthosis needed while increasing the wearer’s degree of freedom in movement—a vast improvement over heavier, more rigid technologies. Cerebral palsy (CP) is the most common motor disorder in pediatric populations. One in 323 children in the United States is diagnosed with CP, with the majority needing multiple devices over their lifetime to improve their mobility, according to the Cerebral Palsy Alliance Research Foundation. The QED grant was awarded by the University City Science Center in Philadelphia. QED is short for “quod erat demonstrandum,” a Latin phrase meaning proven as demonstrated. The team from UD’s College of Health Sciences is among four teams selected for funding from among 50 applicants from 12 institutions in the QED Proof-of-Concept Program, designed to help researchers commercialize their work. The grant, equally funded through the QED program and UD, will be used to develop a prototype of the medical device. A second team led by UD bioengineer Lucas Lu, who is working on a device for detecting circulating tumor cells, also was a finalist in the competition. The funded project will be led by Ahad Behboodi, a doctoral candidate in UD’s biomechanics and movement science program and the project’s principal investigator. Project co-PI’s include Samuel Lee, Behboodi’s advisor and associate professor in the Department of Physical Therapy; Martha Hall, director of the Innovation for Design Lab; Elisa Arch, assistant professor in the Department of Kinesiology and Applied Physiology; and Prabhpreet Gill, licensing associate in the University’s Tech Transfer Office, which is housed in the Office of Economic Innovation and Partnerships (OEIP). The UD team was encouraged to compete for the QED grant by Gill and Joy Goswami, assistant director of Technology Transfer at UD. “Gill and Joy have really pushed us and helped us think beyond the science to develop a product that can benefit people,” said Lee.
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