Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship

The relationships between EMG and elbow angle were investigated to identify the signal on upper-limb muscle. Ten participants were their arm fixed in an isometric position and 100% of maximum voluntary contraction (MVC). Electromyogram (EMG) is the one kind of biological signal that can be recorded...

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Main Author: Tan, Yew Boon
Format: Undergraduates Project Papers
Language:English
Published: 2015
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/13158/1/FKP%20-%20TAN%20YEW%20BOON%20-%20CD%209735.pdf
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author Tan, Yew Boon
author_facet Tan, Yew Boon
author_sort Tan, Yew Boon
collection UMP
description The relationships between EMG and elbow angle were investigated to identify the signal on upper-limb muscle. Ten participants were their arm fixed in an isometric position and 100% of maximum voluntary contraction (MVC). Electromyogram (EMG) is the one kind of biological signal that can be recorded to evaluate the performance of skeletal muscles by means of a sensor electrode. Usually, an estimate of the EMG amplitude is obtained from the raw waveform recorded from the surface of the skin. Root Mean Square (RMS) and Maximum Absolute Value (MAV) have been calculated by using equation and raw waveform. Each participant of exerted force was recorded by using dynamometer. The result revealed that while the force decrease when elbow joint angle increase. This show that electrical signal on upper limb muscle getting stronger when angle of elbow joint increase and make force decrease
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spelling UMPir131582022-02-18T14:17:07Z http://umpir.ump.edu.my/id/eprint/13158/ Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship Tan, Yew Boon Q Science (General) TS Manufactures The relationships between EMG and elbow angle were investigated to identify the signal on upper-limb muscle. Ten participants were their arm fixed in an isometric position and 100% of maximum voluntary contraction (MVC). Electromyogram (EMG) is the one kind of biological signal that can be recorded to evaluate the performance of skeletal muscles by means of a sensor electrode. Usually, an estimate of the EMG amplitude is obtained from the raw waveform recorded from the surface of the skin. Root Mean Square (RMS) and Maximum Absolute Value (MAV) have been calculated by using equation and raw waveform. Each participant of exerted force was recorded by using dynamometer. The result revealed that while the force decrease when elbow joint angle increase. This show that electrical signal on upper limb muscle getting stronger when angle of elbow joint increase and make force decrease 2015-06 Undergraduates Project Papers NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/13158/1/FKP%20-%20TAN%20YEW%20BOON%20-%20CD%209735.pdf Tan, Yew Boon (2015) Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship. Faculty of Manufacturing Engineering, Universiti Malaysia Pahang.
spellingShingle Q Science (General)
TS Manufactures
Tan, Yew Boon
Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title_full Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title_fullStr Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title_full_unstemmed Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title_short Electrical signal activity on upper limb muscle during mechanical load carrying : a study on emg-angle relationship
title_sort electrical signal activity on upper limb muscle during mechanical load carrying a study on emg angle relationship
topic Q Science (General)
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/13158/1/FKP%20-%20TAN%20YEW%20BOON%20-%20CD%209735.pdf
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