Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task

© 2015, Springer-Verlag Berlin Heidelberg. Purpose: Most previous studies of concurrent physical and cognitive demands have addressed tasks of limited relevance to occupational work, and with dissociated physical and cognitive task components. This study investigated effects on muscle activity and h...

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Main Authors: Srinivasan, D., Mathiassen, Svend, Hallman, D., Samani, A., Madeleine, P., Lyskov, E.
Format: Journal Article
Published: Springer-Verlag 2016
Online Access:http://hdl.handle.net/20.500.11937/69021
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author Srinivasan, D.
Mathiassen, Svend
Hallman, D.
Samani, A.
Madeleine, P.
Lyskov, E.
author_facet Srinivasan, D.
Mathiassen, Svend
Hallman, D.
Samani, A.
Madeleine, P.
Lyskov, E.
author_sort Srinivasan, D.
building Curtin Institutional Repository
collection Online Access
description © 2015, Springer-Verlag Berlin Heidelberg. Purpose: Most previous studies of concurrent physical and cognitive demands have addressed tasks of limited relevance to occupational work, and with dissociated physical and cognitive task components. This study investigated effects on muscle activity and heart rate variability of executing a repetitive occupational task with an added cognitive demand integral to correct task performance. Methods: Thirty-five healthy females performed 7.5 min of standardized repetitive pipetting work in a baseline condition and a concurrent cognitive condition involving a complex instruction for correct performance. Average levels and variabilities of electromyographic activities in the upper trapezius and extensor carpi radialis (ECR) muscles were compared between these two conditions. Heart rate and heart rate variability were also assessed to measure autonomic nervous system activation. Subjects also rated perceived fatigue in the neck–shoulder region, as well as exertion. Results: Concurrent cognitive demands increased trapezius muscle activity from 8.2 % of maximum voluntary exertion (MVE) in baseline to 9.0 % MVE (p = 0.0005), but did not significantly affect ECR muscle activity, heart rate, heart rate variability, perceived fatigue or exertion. Conclusion: Trapezius muscle activity increased by about 10 %, without any accompanying cardiovascular response to indicate increased sympathetic activation. We suggest this slight increase in trapezius muscle activity to be due to changed muscle activation patterns within or among shoulder muscles. The results suggest that it may be possible to introduce modest cognitive demands necessary for correct performance in repetitive precision work without any major physiological effects, at least in the short term.
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spelling curtin-20.500.11937-690212018-06-29T12:35:25Z Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task Srinivasan, D. Mathiassen, Svend Hallman, D. Samani, A. Madeleine, P. Lyskov, E. © 2015, Springer-Verlag Berlin Heidelberg. Purpose: Most previous studies of concurrent physical and cognitive demands have addressed tasks of limited relevance to occupational work, and with dissociated physical and cognitive task components. This study investigated effects on muscle activity and heart rate variability of executing a repetitive occupational task with an added cognitive demand integral to correct task performance. Methods: Thirty-five healthy females performed 7.5 min of standardized repetitive pipetting work in a baseline condition and a concurrent cognitive condition involving a complex instruction for correct performance. Average levels and variabilities of electromyographic activities in the upper trapezius and extensor carpi radialis (ECR) muscles were compared between these two conditions. Heart rate and heart rate variability were also assessed to measure autonomic nervous system activation. Subjects also rated perceived fatigue in the neck–shoulder region, as well as exertion. Results: Concurrent cognitive demands increased trapezius muscle activity from 8.2 % of maximum voluntary exertion (MVE) in baseline to 9.0 % MVE (p = 0.0005), but did not significantly affect ECR muscle activity, heart rate, heart rate variability, perceived fatigue or exertion. Conclusion: Trapezius muscle activity increased by about 10 %, without any accompanying cardiovascular response to indicate increased sympathetic activation. We suggest this slight increase in trapezius muscle activity to be due to changed muscle activation patterns within or among shoulder muscles. The results suggest that it may be possible to introduce modest cognitive demands necessary for correct performance in repetitive precision work without any major physiological effects, at least in the short term. 2016 Journal Article http://hdl.handle.net/20.500.11937/69021 10.1007/s00421-015-3268-8 Springer-Verlag restricted
spellingShingle Srinivasan, D.
Mathiassen, Svend
Hallman, D.
Samani, A.
Madeleine, P.
Lyskov, E.
Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title_full Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title_fullStr Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title_full_unstemmed Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title_short Effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
title_sort effects of concurrent physical and cognitive demands on muscle activity and heart rate variability in a repetitive upper-extremity precision task
url http://hdl.handle.net/20.500.11937/69021