Transcutaneous spinal cord stimulation combined with locomotor training to improve walking ability in people with chronic spinal cord injury: study protocol for an international multi-centred double-blinded randomised sham-controlled trial (eWALK)
Author:
Funder
SpinalCure Australia
CatWalk Spinal Cord Injury Trust
Publisher
Springer Science and Business Media LLC
Subject
Neurology (clinical),Neurology,General Medicine
Link
https://www.nature.com/articles/s41393-021-00734-1.pdf
Reference79 articles.
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3. Simpson LA, Eng JJ, Hsieh JT. Wolfe, the Spinal Cord Injury Rehabilitation Evidence Research Team DL. The health and life priorities of individuals with spinal cord injury: a systematic review. J Neurotrauma. 2012;29:1548–55.
4. Mehrholz J, Harvey LA, Thomas S, Elsner B. Is body-weight-supported treadmill training or robotic-assisted gait training superior to overground gait training and other forms of physiotherapy in people with spinal cord injury? A systematic review. Spinal Cord. 2017;55:722–9.
5. Willyard C. How a revolutionary technique got people with spinal-cord injuries back on their feet. Nature. 2019;572:20–6.
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1. A preliminary study exploring the effects of transcutaneous spinal cord stimulation on spinal excitability and phantom limb pain in people with a transtibial amputation;Journal of Neural Engineering;2024-08-01
2. Transcutaneous spinal cord stimulation on motor function in patients with spinal cord injury: A meta-analysis;NeuroRehabilitation;2024-06-28
3. Multi-site lumbar transcutaneous spinal cord stimulation: When less is more;Neuroscience Letters;2024-01
4. Motor and autonomic concomitant health improvements with neuromodulation and exercise (MACHINE) training: a randomised controlled trial in individuals with spinal cord injury;BMJ Open;2023-07
5. Transcutaneous spinal stimulation in people with and without spinal cord injury: Effect of electrode placement and trains of stimulation on threshold intensity;Physiological Reports;2023-06
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