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Neuromechanics: An integrative approach for understanding motor control
Kiisa Nishikawa
, Andrew A. Biewener
, Peter Aerts
, Anna N. Ahn
, Hillel J. Chiel
, Monica A. Daley
, Thomas L. Daniel
, Robert J. Full
, Melina E. Hale
, Tyson L. Hedrick
, A. Kristopher Lappin
, T. Richard Nichols
, Roger D. Quinn
, Richard A. Satterlie
, Brett Szymik
Biological Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
238
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Scopus citations
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Keyphrases
Motor Control
100%
Integrative Approach
100%
Neuromechanics
100%
Sensory Processing
40%
Transfer Function
40%
Coordinated Movement
40%
Sense Organs
40%
Movement Control
40%
Muscle Sense
40%
Emergent Dynamics
40%
Feedback Control
20%
Central Nervous System
20%
Whole Animal
20%
Pattern Generator
20%
Motor Patterns
20%
Spinal Cord
20%
Control System
20%
Spinal Cord Injury
20%
Robotics
20%
Actuation
20%
Time Delay
20%
Dynamic Control
20%
Central Processing
20%
Force Generation
20%
Robotic Design
20%
Human Health Problems
20%
Mechanical Behavior
20%
Intrinsic Properties
20%
Complex Terrain
20%
Biological Principles
20%
Dynamic Behavior
20%
Sensory Input
20%
Neural Information Processing
20%
Dynamic Stability
20%
Dynamic Computation
20%
Centralized Network
20%
Trial Process
20%
Mobile Robot
20%
Body Dynamics
20%
Muscle Dynamics
20%
Prosthesis Design
20%
Control Problem
20%
Self-stabilizing Property
20%
Information Transformation
20%
Unexpected Perturbation
20%
Proprioceptive Feedback
20%
Movement Stability
20%
Error Process
20%
Trial-and-error
20%
Psychology
Motor Control
100%
Sensory Processing
66%
Robotics
66%
Spinal Cord
33%
Public Health
33%
Information Processing
33%
Control System
33%
Sensory Input
33%
Neurological System
33%
Spinal Cord Injury
33%
Neuroscience
Motor Control
100%
Behavior (Neuroscience)
66%
Sensory Processing
66%
Central Nervous System
33%
Information Processing
33%
Spinal Cord
33%
Spinal Cord Injury
33%