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  4. Intrafascicular peripheral nerve stimulation produces fine functional hand movements in primates
 
research article

Intrafascicular peripheral nerve stimulation produces fine functional hand movements in primates

Badi, Marion  
•
Wurth, Sophie  
•
Scarpato, Ilaria  
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October 27, 2021
Science Translational Medicine

Restoring dexterous hand control is critical for people with paralysis. Approaches based on surface or intramuscular stimulation provide limited finger control, generate insufficient force to recover functional movements, and require numerous electrodes. Here, we show that intrafascicular peripheral electrodes could produce functional grasps and sustained forces in three monkeys. We designed an intrafascicular implantable electrode targeting the motor fibers of the median and radial nerves. Our interface selectively and reliably activated extrinsic and intrinsic hand muscles, generating multiple functional grips, hand opening, and sustained contraction forces for up to 2 months. We extended those results to a behaving monkey with transient hand paralysis and used intracortical signals to control simple stimulation protocols that enabled this animal to perform a functional grasping task. Our findings show that just two intrafascicular electrodes can generate a rich portfolio of dexterous and functional hand movements with important implications for clinical applicability.

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Type
research article
DOI
10.1126/scitranslmed.abg6463
Web of Science ID

WOS:000711837100004

Author(s)
Badi, Marion  
Wurth, Sophie  
Scarpato, Ilaria  
Roussinova, Evgenia  
Losanno, Elena
Bogaard, Andrew
Delacombaz, Maude
Borgognon, Simon  
Cvancara, Paul
Fallegger, Florian
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Date Issued

2021-10-27

Publisher

AMER ASSOC ADVANCEMENT SCIENCE

Published in
Science Translational Medicine
Volume

13

Issue

617

Article Number

eabg6463

Subjects

Cell Biology

•

Medicine, Research & Experimental

•

Research & Experimental Medicine

•

implanted neuroprosthesis

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electrical-stimulation

•

spastic paresis

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h-reflexes

•

grasp

•

restoration

•

tetraplegia

•

frequency

•

system

•

motor

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
TNE  
UPCOURTINE  
Available on Infoscience
November 20, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/183156
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