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My research is mainly in the area of robot-mediated rehabilitation. I am focused on the investigation and rehabilitation of dysfunction due to aging, neural disease, and neural injury. I am particularly interested in 1) exploring the relationships between brain plasticity and behavioral/motor control changes after robot-assisted interventions; 2)quantifying motor impairment and motor control of the upper limb in real world tasks such as drinking; and 3) defining the methods to maintain therapeutic effectiveness while administering local and remote, robot-mediated interventions.
I direct the Rehabilitation Robotics Lab. This is a new Lab within the Department of Physical, Medicine, and Rehabilitation in the Perelman School of Medicine. The Rehabilitation Robotics Lab mission is to use robotics,rehabilitation,and neuroscience techniques to translate research findings into the development of assistive and therapeutic rehabilitation robots capable of functioning in real-world rehabilitation environments. Our goal is to improve the quality of life and function on activities of daily living (ADLs) of our target population in supervised or under-supervised settings.
My research is mainly in the area of robot-mediated rehabilitation. I am focused on the investigation and rehabilitation of dysfunction due to aging, neural disease, and neural injury. I am particularly interested in 1) exploring the relationships between brain plasticity and behavioral/motor control changes after robot-assisted interventions; 2)quantifying motor impairment and motor control of the upper limb in real world tasks such as drinking; and 3) defining the methods to maintain therapeutic effectiveness while administering local and remote, robot-mediated interventions.
I direct the Rehabilitation Robotics Lab. This is a new Lab within the Department of Physical, Medicine, and Rehabilitation in the Perelman School of Medicine. The Rehabilitation Robotics Lab mission is to use robotics,rehabilitation,and neuroscience techniques to translate research findings into the development of assistive and therapeutic rehabilitation robots capable of functioning in real-world rehabilitation environments. Our goal is to improve the quality of life and function on activities of daily living (ADLs) of our target population in supervised or under-supervised settings.
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Archives of Physical Medicine and Rehabilitationno. 4 (2024): e181
Elsevier eBookspp.15-24, (2024)
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Rithwik Udayagiri,Jessica Yin, Xinyao Cai, William Townsend, Varun Trivedi, Rohan Shende, O Francis Sowande,Laura A Prosser,James H Pikul,Michelle J Johnson
Frontiers in robotics and AI (2024): 1325296-1325296
Roboticapp.1-29, (2024)
Elsevier eBookspp.471-498, (2024)
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Erica L Waters,Michelle J Johnson
IEEE transactions on hapticsno. 99 (2024): 1-18
Innovation in Agingno. Supplement_1 (2023): 930-930
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medRxiv (2022)
Rehabilitation Engineeringpp.361-392, (2022)
CRC Press eBookspp.361-392, (2022)
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