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Modeling constraints to redundancy in bimanual force coordination
Xiaogang Hu
, Karl M. Newell
Mechanical Engineering
Huck Institutes of the Life Sciences
Penn State Neuroscience Institute
Department of Physical Medicine and Rehabilitation
Research output
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Contribution to journal
›
Article
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peer-review
21
Scopus citations
Overview
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Dive into the research topics of 'Modeling constraints to redundancy in bimanual force coordination'. Together they form a unique fingerprint.
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Keyphrases
Redundancy
100%
Modelling Requirements
100%
Force Coordination
100%
Bimanual
100%
Coordination Pattern
83%
Task Constraints
50%
Interactive Influence
50%
Finger Force
33%
Force Output
33%
Muscle Force
33%
Efficiency Model
33%
Environmental Constraints
33%
Isometric Force
16%
Force Production
16%
Relative Influence
16%
Coupling Effect
16%
Trial-to-trial Variability
16%
Constraint-based
16%
Weight-based
16%
Perceived Performance
16%
Task Goal
16%
Weighted Sums
16%
Performance Anomaly
16%
Signal-dependent
16%
Online Control
16%
Coordination Strategy
16%
Engineering
Output Force
100%
Experimental Finding
50%
Realization
50%
Model Test
50%
Coupling Effect
50%
Experimental Model
50%
Error Performance
50%
Computer Science
Dependent Coefficient
100%
Psychology
Realization
100%