Home based fetal heart rate monitor

Fetal heart rate is an important indicator or biological index to know the condition of fetal well-being. This project leads to develop a fetal heart rate monitor that can be used by a pregnant mother in home environment. There are five steps taken to develop a fetal heart rate monitor: 1) data acqu...

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Main Authors: Shabry, N. A. N. B. M., Singh, O. P., Sardana, P., Hisham, R. B., Malarvili, M. B.
Format: Article
Published: Research India Publications 2017
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Online Access:http://eprints.utm.my/id/eprint/76325/
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.763252018-06-29T22:01:36Z http://eprints.utm.my/id/eprint/76325/ Home based fetal heart rate monitor Shabry, N. A. N. B. M. Singh, O. P. Sardana, P. Hisham, R. B. Malarvili, M. B. QH Natural history Fetal heart rate is an important indicator or biological index to know the condition of fetal well-being. This project leads to develop a fetal heart rate monitor that can be used by a pregnant mother in home environment. There are five steps taken to develop a fetal heart rate monitor: 1) data acquisition; 2) data pre-processing; 3) feeding into microcontroller; 4) post-processing and 5) display. The condenser microphone was used as a sensor to acquire fetal heart sound. The sensor acquires the data then undergoes pre-processing which involves amplification and filtration using fourth order low pass butterworth filter. The operational amplifier was used for pre-amplification during filteration; the operational amplifier used is LM 741. The signal acquires after pre-processing stage, sent to the microcontroller (ATMega328) for the computation and transmission of data by developing an algorithm so that the computer can read the signal. Finally, the output (fetal heart rate) was displayed on LCD. In this preliminary study, the developed prototype was tested on 10 pregnant mothers supervised by specialised at the clinical setup. The accuracy of the prototype fetal heart rate has been confirmed relative to electronic stethoscope. The overall bias for fetal heart rate based on relative verification between prototype and electronic stethoscope is 1.4 % and -1.2% respectively. Hence, the result shows that developed prototype can detect the fetal heart rate of maternal from third trimester onwards. In future the developed prototype device will be tested on larger database to confirm the accuracy of the device. Research India Publications 2017 Article PeerReviewed Shabry, N. A. N. B. M. and Singh, O. P. and Sardana, P. and Hisham, R. B. and Malarvili, M. B. (2017) Home based fetal heart rate monitor. International Journal of Applied Engineering Research, 12 (6). pp. 813-817. ISSN 0973-4562 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017316469&partnerID=40&md5=5ec2a048cb6c8c70f70e3228316c9ed4
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QH Natural history
spellingShingle QH Natural history
Shabry, N. A. N. B. M.
Singh, O. P.
Sardana, P.
Hisham, R. B.
Malarvili, M. B.
Home based fetal heart rate monitor
description Fetal heart rate is an important indicator or biological index to know the condition of fetal well-being. This project leads to develop a fetal heart rate monitor that can be used by a pregnant mother in home environment. There are five steps taken to develop a fetal heart rate monitor: 1) data acquisition; 2) data pre-processing; 3) feeding into microcontroller; 4) post-processing and 5) display. The condenser microphone was used as a sensor to acquire fetal heart sound. The sensor acquires the data then undergoes pre-processing which involves amplification and filtration using fourth order low pass butterworth filter. The operational amplifier was used for pre-amplification during filteration; the operational amplifier used is LM 741. The signal acquires after pre-processing stage, sent to the microcontroller (ATMega328) for the computation and transmission of data by developing an algorithm so that the computer can read the signal. Finally, the output (fetal heart rate) was displayed on LCD. In this preliminary study, the developed prototype was tested on 10 pregnant mothers supervised by specialised at the clinical setup. The accuracy of the prototype fetal heart rate has been confirmed relative to electronic stethoscope. The overall bias for fetal heart rate based on relative verification between prototype and electronic stethoscope is 1.4 % and -1.2% respectively. Hence, the result shows that developed prototype can detect the fetal heart rate of maternal from third trimester onwards. In future the developed prototype device will be tested on larger database to confirm the accuracy of the device.
format Article
author Shabry, N. A. N. B. M.
Singh, O. P.
Sardana, P.
Hisham, R. B.
Malarvili, M. B.
author_facet Shabry, N. A. N. B. M.
Singh, O. P.
Sardana, P.
Hisham, R. B.
Malarvili, M. B.
author_sort Shabry, N. A. N. B. M.
title Home based fetal heart rate monitor
title_short Home based fetal heart rate monitor
title_full Home based fetal heart rate monitor
title_fullStr Home based fetal heart rate monitor
title_full_unstemmed Home based fetal heart rate monitor
title_sort home based fetal heart rate monitor
publisher Research India Publications
publishDate 2017
url http://eprints.utm.my/id/eprint/76325/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017316469&partnerID=40&md5=5ec2a048cb6c8c70f70e3228316c9ed4
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