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An equilibrium-point model of electromyographic patterns during single-joint movements based on experimentally reconstructed control signals
Mark L. Latash
, Simon R. Goodman
Kinesiology
Center for Interdisciplinary Mathematics
Research output
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Contribution to journal
›
Article
›
peer-review
12
Scopus citations
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Dive into the research topics of 'An equilibrium-point model of electromyographic patterns during single-joint movements based on experimentally reconstructed control signals'. Together they form a unique fingerprint.
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Keyphrases
Control Signal
100%
Single Joint
100%
Joint Movement
100%
Movement-based
100%
Electromyographic Patterns
100%
Equilibrium Point
100%
Point Model
100%
Inertial Load
25%
Movement Kinematics
25%
Movement Trajectory
25%
Compliant Characteristic
25%
Model Prediction
12%
Kinematic Model
12%
Computer Model
12%
Predictive Models
12%
Emergent Properties
12%
Equilibrium-point Hypothesis
12%
Control Pattern
12%
Predictive Power
12%
Pattern-based
12%
Movement Conditions
12%
Real Movement
12%
Dual Strategy
12%
Task Parameters
12%
Kinematic Pattern
12%
Engineering
Control Signal
100%
Single Joint
100%
Equilibrium Point Model
100%
Joints (Structural Components)
66%
Model Prediction
33%
Kinematic Model
33%
Equilibrium Point Hypothesis
33%
Lead Model
33%