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  4. Finger joint coordination during tapping
 
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Finger joint coordination during tapping

Journal
Journal of Biomechanics
Journal Volume
39
Journal Issue
16
Pages
2934-2942
Date Issued
2006-01
Author(s)
Kuo P-L
Lee DL
Jindrich DL
Dennerlein JT
PO-LING KUO  
DOI
10.1016/j.jbiomech.2005.10.028
URI
http://scholars.lib.ntu.edu.tw/handle/123456789/325654
Abstract
We investigated finger joint coordination during tapping by characterizing joint kinematics and torques in terms of muscle activation patterns and energy profiles. Six subjects tapped with their index finger on a computer keyswitch as if they were typing on the middle row of a keyboard. Fingertip force, keyswitch position, kinematics of the metacarpophalangeal (MCP) and the proximal and distal interphalangeal (IP) joints, and intramuscular electromyography of intrinsic and extrinsic finger muscles were measured simultaneously. Finger joint torques were calculated based on a closed-form Newton-Euler inverse dynamic model of the finger. During the keystroke, the MCP joint flexed and the IP joints extended before and throughout the loading phase of the contact period, creating a closing reciprocal motion of the finger joints. As the finger lifted, the MCP joint extended and the interphalangeal (IP) joints flexed, creating an opening reciprocal motion. Intrinsic finger muscle and extrinsic flexor activities both began after the initiation of the downward finger movement. The intrinsic finger muscle activity preceded both the IP joint extension and the onset of extrinsic muscle activity. Only extrinsic extensor activity was present as the finger was lifted. While both potential energy and kinetic energy are present and large enough to overcome the work necessary to press the keyswitch, the motor control strategies utilize the muscle forces and joint torques to ensure a successful keystroke.
SDGs

[SDGs]SDG7

Type
journal article

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