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Role of individual basal ganglia nuclei in force amplitude generation
Matthew B. Spraker
, Hong Yu
, Daniel M. Corcos
, David E. Vaillancourt
Institute of Clinical and Translational Sciences (ICTS)
Siteman Cancer Center
Division of Clinical Research
Bursky Center for Human Immunology & Immunotherapy Programs (CHiiPs)
Research output
:
Contribution to journal
›
Article
›
peer-review
104
Scopus citations
Overview
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Keyphrases
Basal Ganglia
100%
Percent Signal Change
80%
Signaling Activation
60%
Globus Pallidus
60%
Activation Volume
60%
Motor Cortex
40%
Increased Activity
40%
Subthalamic nucleus
40%
Deactivation
40%
Caudate
20%
Neural Circuits
20%
Putamen
20%
Nervous System
20%
Functional Magnetic Resonance Imaging
20%
Motor Control
20%
Motor Output
20%
Specific Parameters
20%
Thalamic
20%
Force Output
20%
Posterior Putamen
20%
Anterior Putamen
20%
Primary Motor
20%
Pinch Grip
20%
Ipsilateral Side
20%
Thalamocortical Loop
20%
S1 Cortex
20%
Heterogeneous Roles
20%
Neuroscience
Basal Ganglia
100%
Nucleus
100%
Putamen
50%
Globus pallidus
50%
Thalamus
33%
Motor Cortex
33%
Subthalamic Nucleus
33%
Functional Magnetic Resonance Imaging
16%
Nervous System
16%
Motor Control
16%
Neural Circuit
16%