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Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia.

Publication ,  Journal Article
Selfslagh, A; Shokur, S; Campos, DSF; Donati, ARC; Almeida, S; Yamauti, SY; Coelho, DB; Bouri, M; Nicolelis, MAL
Published in: Sci Rep
May 1, 2019

Spinal cord injury (SCI) impairs the flow of sensory and motor signals between the brain and the areas of the body located below the lesion level. Here, we describe a neurorehabilitation setup combining several approaches that were shown to have a positive effect in patients with SCI: gait training by means of non-invasive, surface functional electrical stimulation (sFES) of the lower-limbs, proprioceptive and tactile feedback, balance control through overground walking and cue-based decoding of cortical motor commands using a brain-machine interface (BMI). The central component of this new approach was the development of a novel muscle stimulation paradigm for step generation using 16 sFES channels taking all sub-phases of physiological gait into account. We also developed a new BMI protocol to identify left and right leg motor imagery that was used to trigger an sFES-generated step movement. Our system was tested and validated with two patients with chronic paraplegia. These patients were able to walk safely with 65-70% body weight support, accumulating a total of 4,580 steps with this setup. We observed cardiovascular improvements and less dependency on walking assistance, but also partial neurological recovery in both patients, with substantial rates of motor improvement for one of them.

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Published In

Sci Rep

DOI

EISSN

2045-2322

Publication Date

May 1, 2019

Volume

9

Issue

1

Start / End Page

6782

Location

England

Related Subject Headings

  • Walking
  • Spinal Cord Injuries
  • Paraplegia
  • Neurological Rehabilitation
  • Locomotion
  • Humans
  • Gait
  • Exercise Therapy
  • Electric Stimulation Therapy
  • Brain
 

Citation

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Selfslagh, A., Shokur, S., Campos, D. S. F., Donati, A. R. C., Almeida, S., Yamauti, S. Y., … Nicolelis, M. A. L. (2019). Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia. Sci Rep, 9(1), 6782. https://doi.org/10.1038/s41598-019-43041-9
Selfslagh, Aurelie, Solaiman Shokur, Debora S. F. Campos, Ana R. C. Donati, Sabrina Almeida, Seidi Y. Yamauti, Daniel B. Coelho, Mohamed Bouri, and Miguel A. L. Nicolelis. “Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia.Sci Rep 9, no. 1 (May 1, 2019): 6782. https://doi.org/10.1038/s41598-019-43041-9.
Selfslagh A, Shokur S, Campos DSF, Donati ARC, Almeida S, Yamauti SY, et al. Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia. Sci Rep. 2019 May 1;9(1):6782.
Selfslagh, Aurelie, et al. “Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia.Sci Rep, vol. 9, no. 1, May 2019, p. 6782. Pubmed, doi:10.1038/s41598-019-43041-9.
Selfslagh A, Shokur S, Campos DSF, Donati ARC, Almeida S, Yamauti SY, Coelho DB, Bouri M, Nicolelis MAL. Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia. Sci Rep. 2019 May 1;9(1):6782.

Published In

Sci Rep

DOI

EISSN

2045-2322

Publication Date

May 1, 2019

Volume

9

Issue

1

Start / End Page

6782

Location

England

Related Subject Headings

  • Walking
  • Spinal Cord Injuries
  • Paraplegia
  • Neurological Rehabilitation
  • Locomotion
  • Humans
  • Gait
  • Exercise Therapy
  • Electric Stimulation Therapy
  • Brain