Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application
Nowadays, a biomedical instrument holds a prominent position in medicine. The increased processing and integration capacity of electronic devices and the progress of wireless communications have enabled medical devices to be developed. InfaWrap device is a non-invasive method developed to measure th...
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2021
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Online Access: | http://umpir.ump.edu.my/id/eprint/33432/1/Improving%20the%20Infant-Wrap%20%28InfaWrap%29%20device.pdf http://umpir.ump.edu.my/id/eprint/33432/ https://doi.org/10.1007/978-981-16-0866-7_19 |
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my.ump.umpir.334322022-04-08T02:27:39Z http://umpir.ump.edu.my/id/eprint/33432/ Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application Mohd Hanafi, Abdul Rahim Mohd Azrul Hisham, Mohd Adib Mohamad Zairi, Baharom Nur Hazreen, Mohd Hasni TA Engineering (General). Civil engineering (General) TH Building construction Nowadays, a biomedical instrument holds a prominent position in medicine. The increased processing and integration capacity of electronic devices and the progress of wireless communications have enabled medical devices to be developed. InfaWrap device is a non-invasive method developed to measure the oxygen saturation, body temperature, and heart rate of a person. InfaWrap is designed to assist doctors and parents in tracking the baby’s heart rate and oxygen level by using advanced wireless network sensors. The inability to detect any discomforts that the babies doing the initial stage of life may lead to permanent disabilities and even death due to Critical Congenital Heart Disease (CCHD). In this paper, we focused on improving the Infant-Wrap (InfaWrap) for neonates using MyI-Wrap Mobile Application. A Bluetooth virtual serial port protocol is used to send test results to the smartphone from the oximeter sensor and from the temperature sensor. Two sensors were used; the MAX30100 heart rate sensor with the pulse oximeter and the LM35 with a synchronized Arduino platform with a mobile application. As a result, the device’s sensitivity reaches 96% for oxygen, 81.03 bpm for heart rate, and 35 ℃ for body temperature. The performance value for 2 h begins to shift in minutes 100 but still below the maximum limit. Springer, Singapore 2021 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/33432/1/Improving%20the%20Infant-Wrap%20%28InfaWrap%29%20device.pdf Mohd Hanafi, Abdul Rahim and Mohd Azrul Hisham, Mohd Adib and Mohamad Zairi, Baharom and Nur Hazreen, Mohd Hasni (2021) Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application. In: Intelligent Manufacturing and Mechatronics: Proceedings of the 2nd Symposium on Intelligent Manufacturing and Mechatronics – SympoSIMM 2019, 8 July 2019 , Melaka, Malaysia. pp. 239-248.. ISBN 978-981-16-0866-7 https://doi.org/10.1007/978-981-16-0866-7_19 |
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TA Engineering (General). Civil engineering (General) TH Building construction Mohd Hanafi, Abdul Rahim Mohd Azrul Hisham, Mohd Adib Mohamad Zairi, Baharom Nur Hazreen, Mohd Hasni Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
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Nowadays, a biomedical instrument holds a prominent position in medicine. The increased processing and integration capacity of electronic devices and the progress of wireless communications have enabled medical devices to be developed. InfaWrap device is a non-invasive method developed to measure the oxygen saturation, body temperature, and heart rate of a person. InfaWrap is designed to assist doctors and parents in tracking the baby’s heart rate and oxygen level by using advanced wireless network sensors. The inability to detect any discomforts that the babies doing the initial stage of life may lead to permanent disabilities and even death due to Critical Congenital Heart Disease (CCHD). In this paper, we focused on improving the Infant-Wrap (InfaWrap) for neonates using MyI-Wrap Mobile Application. A Bluetooth virtual serial port protocol is used to send test results to the smartphone from the oximeter sensor and from the temperature sensor. Two sensors were used; the MAX30100 heart rate sensor with the pulse oximeter and the LM35 with a synchronized Arduino platform with a mobile application. As a result, the device’s sensitivity reaches 96% for oxygen, 81.03 bpm for heart rate, and 35 ℃ for body temperature. The performance value for 2 h begins to shift in minutes 100 but still below the maximum limit. |
format |
Conference or Workshop Item |
author |
Mohd Hanafi, Abdul Rahim Mohd Azrul Hisham, Mohd Adib Mohamad Zairi, Baharom Nur Hazreen, Mohd Hasni |
author_facet |
Mohd Hanafi, Abdul Rahim Mohd Azrul Hisham, Mohd Adib Mohamad Zairi, Baharom Nur Hazreen, Mohd Hasni |
author_sort |
Mohd Hanafi, Abdul Rahim |
title |
Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
title_short |
Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
title_full |
Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
title_fullStr |
Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
title_full_unstemmed |
Improving the Infant-Wrap (InfaWrap) device for neonates using MyI-Wrap mobile application |
title_sort |
improving the infant-wrap (infawrap) device for neonates using myi-wrap mobile application |
publisher |
Springer, Singapore |
publishDate |
2021 |
url |
http://umpir.ump.edu.my/id/eprint/33432/1/Improving%20the%20Infant-Wrap%20%28InfaWrap%29%20device.pdf http://umpir.ump.edu.my/id/eprint/33432/ https://doi.org/10.1007/978-981-16-0866-7_19 |
_version_ |
1729703432440250368 |