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Exploring Neurofeedback Training for BMI Power Augmentation of Upper Limbs: A Pilot Study.

, , , , , , and . Entropy, 23 (4): 443 (2021)

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EEG-Based EMG Estimation of Shoulder Joint for the Power Augmentation System of Upper Limbs., , , , , , and . Symmetry, 12 (11): 1851 (2020)A wearable lightweight exoskeleton with full degrees of freedom for upper-limb power assistance., , , , , , and . Adv. Robotics, 35 (7): 413-424 (2021)Sensorless Power Assistance Control for a Lumbar Assist Device., , , , , , , , , and 3 other author(s). ROBIO, page 309-314. IEEE, (2019)Investigation of the EEG scalp distribution for estimation of shoulder joint torque in the upper-limb power assistant system., , , , , , , , and . ROBIO, page 1912-1917. IEEE, (2016)Power-assist on slope with velocity compensation for attendant-propelled electric wheelchairs., , and . Adv. Robotics, 38 (1): 48-61 (January 2024)Exploring Neurofeedback Training for BMI Power Augmentation of Upper Limbs: A Pilot Study., , , , , , and . Entropy, 23 (4): 443 (2021)TMU Feedback Comment Generation System Using Pretrained Sequence-to-Sequence Language Models., and . INLG (Generation Challenges), page 68-73. Association for Computational Linguistics, (2023)Estimation of EMG signal for shoulder joint based on EEG signals for the control of upper-limb power assistance devices., , , , , , , , and . ICRA, page 6020-6025. IEEE, (2017)A New Type of Foldable and Omnidirectional Mobile Assistive Robot., , , , , , and . RCAR, page 92-97. IEEE, (2019)Japanese Named Entity Recognition from Automatic Speech Recognition Using Pre-trained Models., , , , , and . PACLIC, page 102-108. De La Salle University, (2022)