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Rehabilitation robotics is a field of research dedicated to understanding and augmenting rehabilitation through the application of robotic devices. Rehabilitation robotics includes development of robotic devices tailored for assisting different sensorimotor functions [1] (e.g. arm, hand, [2] [3] leg, ankle [4]), development of different schemes of assisting therapeutic training, [5] and ...
Most gait rehabilitation robots that are currently being developed [1] [2] focus on the support of the entire gait cycle as a single unit. These robots use joint trajectories of the entire gait cycle and offer a uniform (more or less) stiff control along this trajectory.
By 2019, Fourier had brought its intelligent rehab devices such as exoskeletons into hundreds of hospitals and medical care centres in over 10 countries and became an established player in the industry. Gu had long dreamt of creating his own humanoid robot and during that year, Fourier launched a new venture to develop humanoid robots. [1]
SAN RAFAEL, Calif., Feb. 10, 2025 (GLOBE NEWSWIRE) -- Ekso Bionics Holdings, Inc. (Nasdaq: EKSO) (the “Company”), an industry leader in exoskeleton technology for medical and industrial use, today announced that it has named National Seating & Mobility (“NSM”), a leading provider of complex rehabilitation technology (“CRT”), mobility and accessibility solutions, as the Company’s ...
CosmoBot is a prototype telerehabilitation robot designed to treat children with disabilities such as Autism Spectrum disorders, Down Syndrome, cerebral palsy, muscular dystrophy, apraxia, neurodevelopmental disorders, and language developmental disorders. [1]
Fields of medicine that utilize telerehabilitation include: physical therapy, occupational therapy, speech-language pathology, audiology, and psychology. Therapy sessions can be individual or community-based. Types of therapy available include motor training exercises, speech therapy, virtual reality, robotic therapy, goal setting, and group ...
Ekso Bionics Holdings Inc. is a company that develops and manufactures powered exoskeleton bionic devices that can be strapped on as wearable robots to enhance the strength, mobility, and endurance of industrial workers and people experiencing paralysis and mobility issues after a brain injury, stroke, multiple sclerosis (MS) or spinal cord injury.
In contrast to robots intended for physical tasks, SARs are designed to support and motivate users to perform their own tasks. [3] The tasks a user engages in can be physical (e.g., rehabilitation exercises for post-stroke users), cognitive (e.g., dementia screening for elderly users), or social (e.g., turn-taking for users with autism spectrum ...