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Medrxiv : the Preprint Server for Health Sciences|September 5, 2025
Muscle fatigue during spinal stimulation and resistive ankle exoskeleton use in children with cerebral palsyCharlotte R DeVol, Victoria M Landrum, Siddhi R Shrivastav, et al.
Journal of Applied Physiology (Bethesda, Md. : 1985)|July 11, 2009
Robust passive dynamics of the musculoskeletal system compensate for unexpected surface changes during human hoppingMarjolein M van der Krogt, Wendy W de Graaf, Claire T Farley, et al.
IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|June 17, 2021
Brain-Computer-Spinal Interface Restores Upper Limb Function After Spinal Cord InjurySoshi Samejima, Abed Khorasani, Vaishnavi Ranganathan, et al.
Physical Therapy|January 25, 2022
Multisite Transcutaneous Spinal Stimulation for Walking and Autonomic Recovery in Motor-Incomplete Tetraplegia: A Single-Subject DesignSoshi Samejima, Charlotte D Caskey, Fatma Inanici, et al.
IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|April 4, 2023
Glassy Carbon Neural Interface for Chronic Epidural Stimulation in Rats With Cervical Spinal Cord InjurySoshi Samejima, Rita Hanna, Brinda K Cariappa, et al.
Journal of Neural Engineering|January 25, 2024
REPORT-SCS: minimum reporting standards for spinal cord stimulation studies in spinal cord injuryRaza N Malik, Soshi Samejima, Claire Shackleton, et al.
Journal of Neural Engineering|September 27, 2019
Neural engineering: the process, applications, and its role in the future of medicineEvon S Ereifej, Courtney E Shell, Jonathon S Schofield, et al.
Brain Stimulation|March 2, 2026
Real-Time Brain-Computer Interface Control of Walking Exoskeleton with Bilateral Sensory FeedbackJeffrey Lim, Po T Wang, Won Joon Sohn, et al.
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