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FMRI study on the neural mechanisms of sensorimotor transformations
Soha Saleh
,
Sergei Adamovich
, Scott Grafton
, Eugene Tunik
Bio-Medical Engineering
Center for Rehabilitation Robotics
Research output
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Chapter in Book/Report/Conference proceeding
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Conference contribution
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Keyphrases
Neural Mechanisms
100%
Motor Adaptation
100%
Replanning
100%
FMRI Study
100%
Forearm
66%
Cursor
66%
External Space
66%
MRI Compatibility
66%
Forearm Orientation
66%
Functional Magnetic Resonance Imaging
33%
Mechanism of Action
33%
Data Glove
33%
Vertical Position
33%
Flexion-extension
33%
Finger Flexion
33%
Superior Parietal Lobule
33%
Torque Motor
33%
Parietal Cortex
33%
Target Position
33%
Motor Planning
33%
Control Block
33%
Premotor Cortex
33%
Inferior Parietal Lobule
33%
Forearm Rotation
33%
Internal Space
33%
Pronated
33%
Supination
33%
Action Planning
33%
Target Orientation
33%
Internal/external
33%
Left Ventral Premotor Cortex
33%
Medicine and Dentistry
Magnetic Resonance Imaging
100%
Functional Magnetic Resonance Imaging
50%
Arm
50%
Finger
50%
Parietal Cortex
50%
Premotor Cortex
50%
Inferior Parietal Lobule
50%
Supination
50%
Superior Parietal Lobule
50%
Neuroscience
Magnetic Resonance Imaging
100%
Neural Mechanism
100%
Functional Magnetic Resonance Imaging
50%
Parietal Cortex
50%
Superior Parietal Lobule
50%
Inferior Parietal Lobule
50%
Premotor Cortex
50%