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- W4387490247 abstract "Combining functional electrical stimulation (FES) and robotics may enhance recovery after stroke, by providing neural feedback with the former while improving quality of motion and minimizing muscular fatigue with the latter. Here, we explored whether and how FES, robot assistance and their combination, affect users' performance, effort, fatigue and user experience. 15 healthy participants performed a wrist flexion/extension tracking task with FES and/or robotic assistance. Tracking performance improved during the hybrid FES-robot and the robot-only assistance conditions in comparison to no assistance, but no improvement is observed when only FES is used. Fatigue, muscular and voluntary effort are estimated from electromyographic recording. Total muscle contraction and volitional activity are lowest with robotic assistance, whereas fatigue level do not change between the conditions. The NASA-Task Load Index answers indicate that participants found the task less mentally demanding during the hybrid and robot conditions than the FES condition. The addition of robotic assistance to FES training might thus facilitate an increased user engagement compared to robot training and allow longer motor training session than with FES assistance." @default.
- W4387490247 created "2023-10-11" @default.
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- W4387490247 date "2023-01-01" @default.
- W4387490247 modified "2023-10-12" @default.
- W4387490247 title "Hybrid robotic and electrical stimulation assistance can enhance performance and reduce mental demand" @default.
- W4387490247 doi "https://doi.org/10.1109/tnsre.2023.3323370" @default.
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