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Updated: Feb 15, 2026

Maximum Isometric Tetanic Force Measurement of the Tibialis Anterior Muscle in the Rat
Published on: June 26, 2021
Modular Organization of Exploratory Force Development Under Isometric Conditions in the Human Arm
Jinsook Roh1,2,3, Sang Wook Lee4,5,6, Kevin D Wilger1,2
1a Department of Kinesiology , Temple University , Philadelphia , PA , USA.
Abstract:
Muscle coordination of isometric force production can be explained by a smaller number of modules. Variability in force output, however, is higher during exploratory/transient force development phases than force maintenance phase, and it is not clear whether the same modular structure underlies both phases. In this study, eight neurologically-intact adults isometrically performed target force matches in 54 directions at hands, and electromyographic (EMG) data from eight muscles were parsed into four sequential phases. Despite the varying degree of motor complexity across phases (significant between-phase differences in EMG-force correlation, angular errors, and between-force correlations), the number/composition of motor modules were found equivalent across phases, suggesting that the CNS systematically modulated activation of the same set of motor modules throughout sequential force development.
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