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Fully Implantable Plantar Cutaneous Augmentation System for Rats Using Closed-loop Electrical Nerve Stimulation
Biomechanical effects of the addition of a precision constraint on a collective load carriage task
I Felt the Ball”–The Future of Spine Injury Recovery - ScienceDirect
Fully Implantable Plantar Cutaneous Augmentation System for Rats Using Closed-loop Electrical Nerve Stimulation
Feasibility and tolerance of a robotic postural training to improve standing in a person with ambulatory spinal cord injury
Real-time control of trunk posture during locomotion. (a) The
Dual electrical stimulation at spinal-muscular interface reconstructs spinal sensorimotor circuits after spinal cord injury
Frontiers Effects of Multi-Muscle Electrical Stimulation and Stand Training on Stepping for an Individual With SCI
Human Lumbosacral Spinal Cord Interprets Loading During Stepping
Frontiers Effects of Multi-Muscle Electrical Stimulation and Stand Training on Stepping for an Individual With SCI
Gait Characteristics and Brain Activity in Parkinson's Disease with Concomitant Postural Abnormalities
Fully Implantable Plantar Cutaneous Augmentation System for Rats Using Closed-loop Electrical Nerve Stimulation