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Motor Imagery based Brain Computer Interface Paradigm for Upper Limb Stroke Rehabilitation
Jacob Petersen
*
,
Helle K. Iversen
, Sadasivan Puthusserypady
*
Corresponding author for this work
Department of Clinical Medicine
3
Citations (Scopus)
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Dive into the research topics of 'Motor Imagery based Brain Computer Interface Paradigm for Upper Limb Stroke Rehabilitation'. Together they form a unique fingerprint.
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Engineering
Brain-Computer Interface
100%
Motor Imagery
100%
Feature Extraction
40%
Common Spatial Pattern
40%
Isolation Method
20%
Perceptron
20%
Classification Method
20%
Motor Function
20%
Computer Science
Computer Interface
100%
Interface System
60%
Feature Extraction
40%
Spatial Pattern
40%
Classification Method
20%
Average Accuracy
20%
Motor Function
20%
Multilayer Perceptron
20%
Neuroscience
Cerebrovascular Accident
100%
Brain-Computer Interface
100%
Neurorehabilitation
40%
Perceptron
20%
Keyphrases
Upper-limb Stroke Rehabilitation
100%
Spatio-spectral
40%
Competition Data
20%
Hand Motor Function
20%