Preliminary performance of a surgically implanted neuroprosthesis for standing and transfers--where do we stand?
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Summary
Neuroprosthesis users with tetraplegia and paraplegia alike benefited from the improvements in their general health derived from exercise, including reduced risk of decubiti and self-reported modulation of spasticity.
- Type
- article
- Published
- 2001-11-01
- Cited by
- 108
- References
- 24
- OpenAlex
- https://openalex.org/W2411209545
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7904268
Keywords
Neuroprosthetics, Tetraplegia, Spinal cord injury, Paraplegia, Physical medicine and rehabilitation
References
- In-line lead connector for use with implanted neuroprosthesis
- Effects of stimulated hip extension moment and position on upper-limb support forces during FNS-induced standing--a technical note.
- An Externally Powered, Multichannel, Implantable Stimulator for Versatile Control of Paralyzed Muscle
- Implantation of a 16‐Channel Functional Electrical Stimulation Walking System
- The effects of armrests and high seat heights on lower-limb joint load and muscular activity during sitting and rising.
- Neural prostheses—Replacing motor function after disease or disability
- Standing-up of a healthy subject and a paraplegic patient.
- The influence of chair height on lower limb mechanics during rising
- Surgical technique for installing an eight-channel neuroprosthesis for standing.
- An analysis of sit-to-stand movements.
- Instrumented parallel bars for three-dimensional force measurement.
- Restoration and analysis of standing-up in complete paraplegia utilizing functional electrical stimulation.
- Muscle selection and walking performance of multichannel FES systems for ambulation in paraplegia.
- Rail supporting transducer posts for three-dimensional force measurement.
- A surgically-implanted intramuscular electrode for an implantable neuromuscular stimulation system
- Tissue response to chronically stimulated implanted epimysial and intramuscular electrodes.
- The use of selective electrical stimulation of the quadriceps to improve standing function in paraplegia.
- Journal of Rehabilitation Research and Development《康复研究与发展杂志》目录
Cited by
- Surface electromyography activity of trunk muscles during wheelchair propulsion.
- VENTRAL ROOT OR DORSAL ROOT GANGLION MICROSTIMULATION TO EVOKE HINDLIMB MOTOR RESPONSES
- Clinical Applications of Electrical Stimulation After Spinal Cord Injury
- Standing with functional neuromuscular stimulation: effect of foot placement and feedback variables
- Selection of an optimal muscle set for a standing neuroprosthesis using a human musculoskeletal model
- Exercise and Osteoporosis: A Dose-Response Meta-Analysis
- Implantable neuroprosthetic technology
- Block of Peripheral Pain Response by High‐Frequency Sinusoidal Stimulation
- The efficacy and benefits of environmental control systems for the severely disabled.
- Simulating the restoration of standing balance at leaning postures with functional neuromuscular stimulation following spinal cord injury
- Neuromuscular Electrical Stimulation for Motor Restoration in Hemiplegia
- Neurotherapeutic and neuroprosthetic effects of implanted functional electrical stimulation for ambulation after incomplete spinal cord injury.
- Effects of Stimulating Hip and Trunk Muscles on Seated Stability, Posture and Reach after Spinal Cord Injury
- Effects of Intramuscular Trunk Stimulation on Manual Wheelchair Propulsion Mechanics in Six Subjects with Spinal Cord Injury
- An Implanted Neuroprosthesis for Restoring Arm and Hand Function in People with High Level Tetraplegia
- Intraoperative Evaluation of the Spiral Nerve Cuff Electrode for a Standing Neuroprosthesis
- Neuromodulation of lower limb motor control in restorative neurology
- Feed forward and feedback control for over-ground locomotion in anaesthetized cats
- Longitudinal Performance of a Surgically Implanted Neuroprosthesis for Lower Extremity Exercise, Standing, and Transfers after Spinal Cord Injury
- Fascicular anatomy of human femoral nerve: Implications for neural prostheses using nerve cuff electrodes
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