The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)

Biofeedback devices are used more extensively in various applications. The use of biofeedback technology is pioneered by the West. This study was undertaken to develop a biofeedback tool using technology expertise in Malaysia. This study aims to develop a biofeedback device using photoplystmograph t...

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Main Authors: Abdul Wahab, Muhammad Nubli, Ahmad, Noraziah, Abdalla, Ahmad N
Format: Research Report
Language:English
Published: 2011
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/36481/
http://umpir.ump.edu.my/id/eprint/36481/1/The%20development%20of%20biofeedback%20photoplethysmograph%20%28electrocardiograph%29%20detection%20device.wm.pdf
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author Abdul Wahab, Muhammad Nubli
Ahmad, Noraziah
Abdalla, Ahmad N
author_facet Abdul Wahab, Muhammad Nubli
Ahmad, Noraziah
Abdalla, Ahmad N
author_sort Abdul Wahab, Muhammad Nubli
building UMP Institutional Repository
collection Online Access
description Biofeedback devices are used more extensively in various applications. The use of biofeedback technology is pioneered by the West. This study was undertaken to develop a biofeedback tool using technology expertise in Malaysia. This study aims to develop a biofeedback device using photoplystmograph technique that measures individual pulse rate, analyzes emotional status and displays it performance on the computer screen. This research uses a sensor that has been modified to detect the pulse of the individual, analyzing the received data to see whether the individual is in a good, medium or weak within the emotional spectrum. The status of this emotional spectrum is displayed by the computer software that has been developed to respond due to user's emotions. This research is also developed biofeedback simulation software that uses cultural background of Malaysia. The result from the hardware and software, of this study has successfully detect the status of individual emotion either in low, mid and high coherence. This tracking system is important as a basis for developing other applications that use biofeedback techniques as a medium. This technology can be further developed and used in a variety of conditions which requires measurement of an individuals emotion.
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institution Universiti Malaysia Pahang
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language English
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publishDate 2011
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spelling ump-364812023-03-08T07:39:35Z http://umpir.ump.edu.my/id/eprint/36481/ The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1) Abdul Wahab, Muhammad Nubli Ahmad, Noraziah Abdalla, Ahmad N RC Internal medicine Biofeedback devices are used more extensively in various applications. The use of biofeedback technology is pioneered by the West. This study was undertaken to develop a biofeedback tool using technology expertise in Malaysia. This study aims to develop a biofeedback device using photoplystmograph technique that measures individual pulse rate, analyzes emotional status and displays it performance on the computer screen. This research uses a sensor that has been modified to detect the pulse of the individual, analyzing the received data to see whether the individual is in a good, medium or weak within the emotional spectrum. The status of this emotional spectrum is displayed by the computer software that has been developed to respond due to user's emotions. This research is also developed biofeedback simulation software that uses cultural background of Malaysia. The result from the hardware and software, of this study has successfully detect the status of individual emotion either in low, mid and high coherence. This tracking system is important as a basis for developing other applications that use biofeedback techniques as a medium. This technology can be further developed and used in a variety of conditions which requires measurement of an individuals emotion. 2011 Research Report NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36481/1/The%20development%20of%20biofeedback%20photoplethysmograph%20%28electrocardiograph%29%20detection%20device.wm.pdf Abdul Wahab, Muhammad Nubli and Ahmad, Noraziah and Abdalla, Ahmad N (2011) The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1). , [Research Report] (Unpublished)
spellingShingle RC Internal medicine
Abdul Wahab, Muhammad Nubli
Ahmad, Noraziah
Abdalla, Ahmad N
The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title_full The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title_fullStr The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title_full_unstemmed The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title_short The development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (PERKASA 1)
title_sort development of biofeedback photoplethysmograph (electrocardiograph) detection device and simulation application to detect and simulate emotional performance (perkasa 1)
topic RC Internal medicine
url http://umpir.ump.edu.my/id/eprint/36481/
http://umpir.ump.edu.my/id/eprint/36481/1/The%20development%20of%20biofeedback%20photoplethysmograph%20%28electrocardiograph%29%20detection%20device.wm.pdf