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Effects and Safety of Wearable Exoskeleton for Robot-Assisted Gait Training: A Retrospective Preliminary Study

Gwang-Min Park, Suhyun Cho, Juntaek Hong, Dae‐Hyun Kim, Ji Cheol Shin

Year
2023
Citations
16
Access
Open access

Abstract

BACKGROUND: Wearable devices for robot-assisted gait training (RAGT) provide overground gait training for the rehabilitation of neurological injuries. We aimed to evaluate the effectiveness and safety of RAGT in patients with a neurologic deficit. METHODS: Twenty-eight patients receiving more than ten sessions of overground RAGT using a joint-torque-assisting wearable exoskeletal robot were retrospectively analyzed in this study. Nineteen patients with brain injury, seven patients with spinal cord injury and two patients with peripheral nerve injury were included. Clinical outcomes, such as the Medical Research Council scale for muscle strength, Berg balance scale, functional ambulation category, trunk control tests, and Fugl-Meyer motor assessment of the lower extremities, were recorded before and after RAGT. Parameters for RAGT and adverse events were also recorded. RESULTS: < 0.05). The familiarization process was completed within six sessions of RAGT. Only two mild adverse events were reported. CONCLUSIONS: Overground RAGT using wearable devices can improve muscle strength, balance, and gait function. It is safe in patients with neurologic injury.

Keywords

ExoskeletonWearable computerPhysical medicine and rehabilitationGait trainingGaitMedicinePowered exoskeletonWearable technologyRobotPhysical therapy

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