Controlled Tactile and Vibration Feedback Embedded in a Smart Knee Brace

The vastus medialis oblique (VMO) and vastus lateralis (VL) muscles at the knee joint play important roles for coordination, stability, and posture control. However, no currently available device records muscle activity while simultaneously warning users regarding abnormal muscle activity. This stud...

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Published inIEEE consumer electronics magazine Vol. 9; no. 1; pp. 54 - 60
Main Authors Hsu, Wei-Chun, Sugiarto, Tommy, Wu, Jia-Lin, Lin, Yi-Jia, Lin, Li-Fong, Tsai, Chih-Yi, Chang, Chao-Chin, Hsieh, Zhong-Rong, Lee, Yung-Hsiang
Format Magazine Article
LanguageEnglish
Published Piscataway IEEE 01.01.2020
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN2162-2248
2162-2256
DOI10.1109/MCE.2019.2941459

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Abstract The vastus medialis oblique (VMO) and vastus lateralis (VL) muscles at the knee joint play important roles for coordination, stability, and posture control. However, no currently available device records muscle activity while simultaneously warning users regarding abnormal muscle activity. This study used a commercialized electromyography sensors placed on the VL and VMO to monitor muscle activity while triggering warnings and vibration feedback to the muscles when an undesired ratio of VL/VMO muscular activation level set by current study was detected. The system was able to trigger alarms when the subject performed moderate-intensity activity and avoid triggering during low-intensity activity. Further research is needed of high-intensity exercises, such as running or weightlifting, to determine the effects of increased muscle activity on the judgment of the undesired ratio of VL/VMO muscular activation level using the device reported in the current study.
AbstractList The vastus medialis oblique (VMO) and vastus lateralis (VL) muscles at the knee joint play important roles for coordination, stability, and posture control. However, no currently available device records muscle activity while simultaneously warning users regarding abnormal muscle activity. This study used a commercialized electromyography sensors placed on the VL and VMO to monitor muscle activity while triggering warnings and vibration feedback to the muscles when an undesired ratio of VL/VMO muscular activation level set by current study was detected. The system was able to trigger alarms when the subject performed moderate-intensity activity and avoid triggering during low-intensity activity. Further research is needed of high-intensity exercises, such as running or weightlifting, to determine the effects of increased muscle activity on the judgment of the undesired ratio of VL/VMO muscular activation level using the device reported in the current study.
Author Hsu, Wei-Chun
Tsai, Chih-Yi
Lee, Yung-Hsiang
Hsieh, Zhong-Rong
Lin, Yi-Jia
Chang, Chao-Chin
Sugiarto, Tommy
Wu, Jia-Lin
Lin, Li-Fong
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SubjectTerms Activation
Biomedical monitoring
Commercialization
Control stability
Electromyography
Feedback
Injuries
Knee
Legged locomotion
Muscle function
Muscles
Sensors
Vibration control
Vibration monitoring
Title Controlled Tactile and Vibration Feedback Embedded in a Smart Knee Brace
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