4.8 Article

Activity-dependent spinal cord neuromodulation rapidly restores trunk and leg motor functions after complete paralysis

期刊

NATURE MEDICINE
卷 28, 期 2, 页码 260-+

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41591-021-01663-5

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资金

  1. Wings for Life
  2. Defitech Foundation
  3. International Foundation for Research in Paraplegia, Rolex for Enterprise, Carigest Promex, Riders4Riders, ALARME
  4. Panacee Foundation
  5. Pictet Group Charitable Foundation
  6. Firmenich Foundation
  7. ONWARD Medical
  8. European Union [785907]
  9. RESTORE: Eurostars [E10889]
  10. Swiss National Science Foundation (NCCR Robotics)
  11. European Research Council [ERC-2015-CoG HOW2WALKAGAIN 682999]
  12. Commission of Technology and Innovation Innosuisse [CTI 41871.1 IP_LS, CTI 25761.1]
  13. H2020-MSCACOFUND-2015 EPFL fellows program [665667]

向作者/读者索取更多资源

Epidural electrical stimulation (EES) targeting the dorsal roots of lumbosacral segments restores walking ability in people with spinal cord injury. Using a computational framework and software, activity-specific stimulation programs allowed patients to perform various motor activities within a day. Neurorehabilitation significantly improved patients' everyday mobility.
Epidural electrical stimulation (EES) targeting the dorsal roots of lumbosacral segments restores walking in people with spinal cord injury (SCI). However, EES is delivered with multielectrode paddle leads that were originally designed to target the dorsal column of the spinal cord. Here, we hypothesized that an arrangement of electrodes targeting the ensemble of dorsal roots involved in leg and trunk movements would result in superior efficacy, restoring more diverse motor activities after the most severe SCI. To test this hypothesis, we established a computational framework that informed the optimal arrangement of electrodes on a new paddle lead and guided its neurosurgical positioning. We also developed software supporting the rapid configuration of activity-specific stimulation programs that reproduced the natural activation of motor neurons underlying each activity. We tested these neurotechnologies in three individuals with complete sensorimotor paralysis as part of an ongoing clinical trial (www.clinicaltrials.gov identifier NCT02936453). Within a single day, activity-specific stimulation programs enabled these three individuals to stand, walk, cycle, swim and control trunk movements. Neurorehabilitation mediated sufficient improvement to restore these activities in community settings, opening a realistic path to support everyday mobility with EES in people with SCI.

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