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  2. Robots and AI-powered assistive tech are poised to transform ...

    www.aol.com/robots-ai-powered-assistive-tech...

    Other assistive technologies are redefining accessibility and mobility. For example, the Tatum T1, developed by Tatum Robotics, is a robotic hand designed to translate live voice and text output ...

  3. Rehabilitation robotics - Wikipedia

    en.wikipedia.org/wiki/Rehabilitation_robotics

    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 ...

  4. Socially assistive robot - Wikipedia

    en.wikipedia.org/wiki/Socially_assistive_robot

    The effectiveness of socially assistive robots is assessed based on objective measurements of user performance and improvement resulting from the robot’s assistance and support. [5] Unlike other branches of robotics, where effectiveness depends on the robot's physical task completion, SAR measures the success of the robot based on the user's ...

  5. Rehabilitation Engineering and Assistive Technology Society ...

    en.wikipedia.org/wiki/Rehabilitation_Engineering...

    Rehabilitation Engineering and Assistive Technology Society of North America (RESNA) is an association of people with an interest in technology and disability.Its mission statement notes that RESNA's mission is to improve the potential of people with disabilities to achieve their goals through the use of technology through promoting research, development, education, advocacy and provision of ...

  6. Human Engineering Research Laboratories 2 - Wikipedia

    en.wikipedia.org/wiki/Human_Engineering_Research...

    The Human Engineering Research Laboratories (HERL) is a joint research institution under the U.S. Department of Veterans Affairs (VA), the University of Pittsburgh, and the University of Pittsburgh Medical Center (UPMC) that specializes in continuously improving the mobility and function of people with disabilities through advanced engineering in clinical research and medical rehabilitation.

  7. Soft exoskeleton - Wikipedia

    en.wikipedia.org/wiki/Soft_exoskeleton

    In 1983, the Massachusetts Institute of Technology (MIT) introduced the MIT Exoskeleton, a powered exoskeleton designed for rehabilitation purposes. This project, led by Dr. Steven Jacobsen, was a notable step forward in incorporating robotics into assistive devices. [12] [13]