EngineeringMedicine

Daniel Cousins, Alvin Fortaleza, G. A. Albanese, Jacopo Zenzeri, D. Button, M. Holmes

2026.2.27ERGONOMICS

DOI: 10.1080/00140139.2026.2628879

tlooto Summary

This work highlights how submaximal forearm muscle fatigue can temporarily compromise hand tracking ability but suggests that movement accuracy and smoothness recover rapidly with rest.

Abstract

This study investigated how a repeated submaximal hand tracking task affects fine motor performance and short-term recovery. Nineteen males traced a 2:3 Lissajous curve using a haptic wrist robot both pre- and post-fatigue. The fatigue protocol was the same task with resistance applied to the handle of the robot at 40% maximal voluntary isometric wrist force. Performance was measured at baseline and at seven intervals during recovery (0, 1, 2, 4, 6, 8, and 10 minutes). The fatigue protocol led to a 12% decrease in grip force and remained below baseline at 10 minutes. Movement quality, quantified by tracking error, figural error, and jerk ratio, increased by 23%, 19%, and 27%, immediately following fatigue but normalised by 4 minutes. This work highlights how submaximal forearm muscle fatigue can temporarily compromise hand tracking ability but suggests that movement accuracy and smoothness recover rapidly with rest.

Citation format

COUSINS, Daniel, et al. Recovery of fine motor control after submaximal wrist fatigue. ERGONOMICS, 2026: 1–11.