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RESEARCH ARTICLE

Force-Time Entropy of Isometric Impulse

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Pages 227-239 | Received 12 Apr 2015, Accepted 19 Jul 2015, Published online: 16 Sep 2015
 

ABSTRACT

The relation between force and temporal variability in discrete impulse production has been viewed as independent (R. A. Schmidt, H. Zelaznik, B. Hawkins, J. S. Frank, & J. T. Quinn, Citation1979) or dependent on the rate of force (L. G. Carlton & K. M. Newell, Citation1993). Two experiments in an isometric single finger force task investigated the joint force-time entropy with (a) fixed time to peak force and different percentages of force level and (b) fixed percentage of force level and different times to peak force. The results showed that the peak force variability increased either with the increment of force level or through a shorter time to peak force that also reduced timing error variability. The peak force entropy and entropy of time to peak force increased on the respective dimension as the parameter conditions approached either maximum force or a minimum rate of force production. The findings show that force error and timing error are dependent but complementary when considered in the same framework with the joint force-time entropy at a minimum in the middle parameter range of discrete impulse.

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