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Multidigit control of contact forces during transport of handheld objects
Sara A. Winges
, John F. Soechting
, Martha Flanders
Neuroscience
Research output
:
Contribution to journal
›
Article
›
peer-review
20
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Scopus citations
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Keyphrases
Contact Force
100%
Grasping Force
100%
Multi-digit
100%
Handheld Objects
100%
Muscle Activity
66%
Electromyography
66%
Hand muscles
66%
Center of Mass
66%
Contact Plane
66%
Thumb
33%
Mechanical Interaction
33%
Regression Analysis
33%
Stiffness
33%
Object-oriented
33%
Inertial Force
33%
Contact Surface
33%
Index Finger
33%
RING Finger
33%
Horizontal Force
33%
Equilibrium Constraints
33%
Feedback Regulation
33%
Moving Objects
33%
Load Force
33%
Co-contraction
33%
Manipulation Force
33%
Horizontal Translation
33%
Grasp Stability
33%
Complex Moments
33%
Stiffness Modulation
33%
Tangential Load
33%
Active muscle Contraction
33%
Pivot Point
33%
Object Transportation
33%
Active Feedback
33%
In Tandem
33%
Acceleration/deceleration
33%
Engineering
Contact Force
100%
Muscle Activity
66%
Normal Force
33%
Feedforward
33%
Contact Surface
33%
Horizontal Force
33%
Moving Object
33%
Inertial Force
33%
Intrinsic Property
33%
Stiffness Modulation
33%
Mechanical Interaction
33%
Pivot Point
33%
Object Orientation
33%
Rigidity
33%
Social Sciences
Grasping
100%
Multiple Regression
33%
Regression Analysis
33%
Psychology
Grasping
100%
Multiple Regression Analysis
33%
Neuroscience
Regression Analysis
100%