FRL Wrist Control: Wrist Movement Decoding from Surface Electromyography
…Wrist Movement Control from EMG ## Overview **Dataset**: wrist - Wrist posture and movement…
- Participants
- 100
- Size
- 24.9 GB
- Version
- v2.0.0
- Updated
- Jul 10, 2026
100 results for "foot movement" · page 1 of 10 · ranked by relevance
…Wrist Movement Control from EMG ## Overview **Dataset**: wrist - Wrist posture and movement…
Imported from OpenNeuro ds004362
Imported from OpenNeuro ds003343
…Participants’ movements were unconstrained, i.e., in order to follow the sphere…
This dataset comprises synchronized multimodal neurophysiological and biomechanical recordings from 128-channel EEG, electromyography (EMG), electrooculography (EOG), and motion capture during a perturbed beam-walking task. Participants performed four 10-minute sessions of standing or walking on a narrow balance beam while exposed to sensorimotor perturbations (visual field rotations or waist pulls). The dataset includes preprocessed EEG data with identified good channels and independent component analysis results, enabling investigation of cortical mechanisms underlying balance control and responses to perturbations.
…left_hand, right_hand, hands, feet, left_hand_right_foot, right_hand…
This dataset comprises high-density, dual-layer EEG, neck EMG, IMU acceleration, ground reaction force, and structural MRI-derived head model data from 32 young adult participants walking over uneven terrain and at varying speeds. Each participant completed two three-minute trials per condition along with a seated rest trial. The dataset is designed to support research on the neural and biomechanical correlates of walking balance and gait adaptation on irregular surfaces.
…subjects performed motor imagery (left hand, right hand, or right foot) according…
…3C (left hand, right hand, foot-hooking, 11 subj). 3 sessions per…
This dataset comprises high-density, dual-layer electroencephalography (EEG), neck electromyography (EMG), inertial measurement unit (IMU) acceleration, and ground reaction force recordings collected from older adults walking over uneven terrain at varying speeds. Each participant completed multiple walking trials under different conditions as well as a seated rest trial, with digitized electrode locations provided. The dataset supports research into the neural and biomechanical mechanisms underlying balance and gait control during complex locomotion in aging populations.