An exoskeleton controlled by an epidural wireless brain–machine interface in a tetraplegic patient: a proof-of-concept demonstration

Author:

Benabid Alim Louis,Costecalde Thomas,Eliseyev Andrey,Charvet Guillaume,Verney Alexandre,Karakas Serpil,Foerster Michael,Lambert Aurélien,Morinière Boris,Abroug Neil,Schaeffer Marie-Caroline,Moly Alexandre,Sauter-Starace Fabien,Ratel David,Moro Cecile,Torres-Martinez Napoleon,Langar Lilia,Oddoux Manuela,Polosan Mircea,Pezzani Stephane,Auboiroux Vincent,Aksenova Tetiana,Mestais Corinne,Chabardes Stephan

Funder

French Ministry of Health

Publisher

Elsevier BV

Subject

Neurology (clinical)

Reference30 articles.

1. Influence du type et du niveau de la lesion, du délai chirurgical et des complications respiratoires sur la récuperation clinique à un an;Friggeri,2006

2. Restoring cortical control of functional movement in a human with quadriplegia;Bouton;Nature,2016

3. Restoration of reaching and grasping movements through brain-controlled muscle stimulation in a person with tetraplegia: a proof-of-concept demonstration;Ajiboye;Lancet,2017

4. A brain–spine interface alleviating gait deficits after spinal cord injury in primates;Capogrosso;Nature,2016

5. Could cortical signals control intraspinal stimulators? A theoretical evaluation;Mushahwar;IEEE Trans Neural Syst Rehabil Eng,2006

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