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Impact of different lifting height and load mass on muscle performance using periodogram
Shair, E. F1, Ahmad, S. A2, Abdullah, A. R3, Marhaban, M. H4, Mohd Tamrin, S. B5.
Musculoskeletal disorders (MSDs) caused by muscle fatigue have been a major problem for industry
which needs to be resolved to save costs related to human resource development (extra training and
compensation). Detailed fatigue monitoring researches aimed at finding the best fatigue indices is not
new although studies on the causes of fatigue can be explored further. Identification analysis is required
to monitor the factors that influence muscle performance characteristic of surface electromyography
(sEMG) signal. Periodogram monitoring technique applies a frequency domain signal and represents the
distribution of the signal power over the frequency. It is a technique that allows the tracing of small
changes in the behaviour of sEMG signal when external parameters are varied. This technique is used
in this paper to monitor the sEMG signal changes in muscle performance when the lifting height and
load mass are varied. The periodogram amplitude, which represents the power, increases with the rise in
lifting height and load mass. From the frequency representation of the periodogram, the root mean square
voltage (Vrms) is calculated where the muscle performance characteristic could be further identified. The
Vrms also shows a similar trend when the lifting height and load mass are varied proving the periodogram
technique is useful to monitor changes in the muscle performance during manual lifting.
Affiliation:
- Universiti Putra Malaysia, Malaysia
- Universiti Putra Malaysia, Malaysia
- Universiti Putra Malaysia, Malaysia
- Universiti Teknikal Malaysia Melaka, Malaysia
- Universiti Putra Malaysia, Malaysia
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Indexation |
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MyJurnal (2019) |
H-Index
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0 |
Immediacy Index
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0.000 |
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Scopus (SCImago Journal Rankings 2016) |
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Rank |
Q4 (Agricultural and Biological Sciences (miscellaneous)) Q4 (Chemical Engineering (miscellaneous)) Q4 (Computer Science (miscellaneous)) Q4 (Environmental Science (miscellaneous)) |
Additional Information |
0.114 (SJR) |
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