A System for Measurement of the Asymmetry between Left and Right Shoulders

The study presents the development of a system for measurement of the asymmetry between the human shoulders. Such measurements are necessary in order to diagnose potential muscular imbalance and when possible, take corrective actions in the form of daily exercises. The system is based on two infrare...

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Published in:2019 IEEE 25th International Symposium for Design and Technology in Electronic Packaging (SIITME) pp. 102 - 105
Main Authors: Evstatiev, Boris I., Ilieva, Iskra S., Asenov, Asen T., Yankov, Emil H.
Format: Conference Proceeding
Language:English
Published: IEEE 01-10-2019
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Abstract The study presents the development of a system for measurement of the asymmetry between the human shoulders. Such measurements are necessary in order to diagnose potential muscular imbalance and when possible, take corrective actions in the form of daily exercises. The system is based on two infrared proximity sensors, installed above the shoulders of the investigated human shoulders. A calibration procedure of the sensors and a following calibration model selection reduced the absolute error for the shoulders difference below 1.49 mm. Yet, if the measurement distance is kept within the range (40...110) mm, the accuracy is below 1 mm. The experiments also showed that the calibration is individual for each reflection surface, which should be considered during experimental measurements.
AbstractList The study presents the development of a system for measurement of the asymmetry between the human shoulders. Such measurements are necessary in order to diagnose potential muscular imbalance and when possible, take corrective actions in the form of daily exercises. The system is based on two infrared proximity sensors, installed above the shoulders of the investigated human shoulders. A calibration procedure of the sensors and a following calibration model selection reduced the absolute error for the shoulders difference below 1.49 mm. Yet, if the measurement distance is kept within the range (40...110) mm, the accuracy is below 1 mm. The experiments also showed that the calibration is individual for each reflection surface, which should be considered during experimental measurements.
Author Evstatiev, Boris I.
Yankov, Emil H.
Ilieva, Iskra S.
Asenov, Asen T.
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  organization: University of Ruse Angel Kanchev,Faculty of Electrical Engineering,Ruse,Bulgaria,7017
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  givenname: Iskra S.
  surname: Ilieva
  fullname: Ilieva, Iskra S.
  organization: University of Ruse Angel Kanchev,Faculty of Transport,Ruse,Bulgaria,7017
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  givenname: Asen T.
  surname: Asenov
  fullname: Asenov, Asen T.
  organization: University of Ruse Angel Kanchev,Faculty of Transport,Ruse,Bulgaria,7017
– sequence: 4
  givenname: Emil H.
  surname: Yankov
  fullname: Yankov, Emil H.
  organization: Faculty of Mechanical and Manufacturing Engineering,Faculty of Mechanical and Manufacturing Engineering
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Snippet The study presents the development of a system for measurement of the asymmetry between the human shoulders. Such measurements are necessary in order to...
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StartPage 102
SubjectTerms infrared sensors
measuring system
muscular imbalance
Title A System for Measurement of the Asymmetry between Left and Right Shoulders
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