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A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level

With better quality of life, obesity is becoming a worldwide disease due to over-eating and sedentary lifestyle. Therefore, daily monitoring of the glucose and body fat percentage (%) is vital to keep track of one’s health. Currently, separated devices are required to monitor each parameter at home...

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Autores principales: Duong Trong, Luong, Nguyen Quang, Linh, Hoang Anh, Duc, Dang Tuan, Diep, Nguyen Chi, Hieu, Nguyen Minh, Duc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sciendo 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9709820/
https://www.ncbi.nlm.nih.gov/pubmed/36479359
http://dx.doi.org/10.2478/joeb-2022-0009
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author Duong Trong, Luong
Nguyen Quang, Linh
Hoang Anh, Duc
Dang Tuan, Diep
Nguyen Chi, Hieu
Nguyen Minh, Duc
author_facet Duong Trong, Luong
Nguyen Quang, Linh
Hoang Anh, Duc
Dang Tuan, Diep
Nguyen Chi, Hieu
Nguyen Minh, Duc
author_sort Duong Trong, Luong
collection PubMed
description With better quality of life, obesity is becoming a worldwide disease due to over-eating and sedentary lifestyle. Therefore, daily monitoring of the glucose and body fat percentage (%) is vital to keep track of one’s health. Currently, separated devices are required to monitor each parameter at home and some are still invasive to measure the glucose level. In this study, a portable band-shaped bioimpedance system is proposed to measure both parameters. The system is battery run with two main modules: the current source and the voltage recording, with minimal design to fit into a band of 150 mm x 40 mm in dimension. The impedance is measured at the frequency of 1 kHz at 30 kHz sampling frequency and in 1000 signal cycles to flatten noises. The final average impedance is calculated and evaluated in correlation with the body fat and the fasting glucose. The system was tested on 21 volunteers and 4 locations were picked for the impedance measurement: the arm under the triceps, the side of the belly, the back on one side and the thigh under the bicep femoris. The results show promising results with the arm being the best location for predicting the body fat (correlation coefficient: 0.89, 95% CI: 0.73-0.95), while the thigh impedance best correlated with the fasting glucose (correlation coefficient: 0.92, 95% CI: 0.81-0.97). These preliminary results indicate the feasibility and capacity of the proposed system as a home-based, portable and convenient system in monitoring the body fat and glucose. The system’s performance will be verified and replicated in a future larger study.
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spelling pubmed-97098202022-12-06 A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level Duong Trong, Luong Nguyen Quang, Linh Hoang Anh, Duc Dang Tuan, Diep Nguyen Chi, Hieu Nguyen Minh, Duc J Electr Bioimpedance Research Article With better quality of life, obesity is becoming a worldwide disease due to over-eating and sedentary lifestyle. Therefore, daily monitoring of the glucose and body fat percentage (%) is vital to keep track of one’s health. Currently, separated devices are required to monitor each parameter at home and some are still invasive to measure the glucose level. In this study, a portable band-shaped bioimpedance system is proposed to measure both parameters. The system is battery run with two main modules: the current source and the voltage recording, with minimal design to fit into a band of 150 mm x 40 mm in dimension. The impedance is measured at the frequency of 1 kHz at 30 kHz sampling frequency and in 1000 signal cycles to flatten noises. The final average impedance is calculated and evaluated in correlation with the body fat and the fasting glucose. The system was tested on 21 volunteers and 4 locations were picked for the impedance measurement: the arm under the triceps, the side of the belly, the back on one side and the thigh under the bicep femoris. The results show promising results with the arm being the best location for predicting the body fat (correlation coefficient: 0.89, 95% CI: 0.73-0.95), while the thigh impedance best correlated with the fasting glucose (correlation coefficient: 0.92, 95% CI: 0.81-0.97). These preliminary results indicate the feasibility and capacity of the proposed system as a home-based, portable and convenient system in monitoring the body fat and glucose. The system’s performance will be verified and replicated in a future larger study. Sciendo 2022-11-04 /pmc/articles/PMC9709820/ /pubmed/36479359 http://dx.doi.org/10.2478/joeb-2022-0009 Text en © 2022 Luong Duong Trong, Linh Nguyen Quang, Duc Hoang Anh, Diep Dang Tuan, Hieu Nguyen Chi and Duc Nguyen Minh, published by Sciendo https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License.
spellingShingle Research Article
Duong Trong, Luong
Nguyen Quang, Linh
Hoang Anh, Duc
Dang Tuan, Diep
Nguyen Chi, Hieu
Nguyen Minh, Duc
A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title_full A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title_fullStr A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title_full_unstemmed A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title_short A Portable Band-shaped Bioimpedance System to Monitor the Body Fat and Fasting Glucose Level
title_sort portable band-shaped bioimpedance system to monitor the body fat and fasting glucose level
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9709820/
https://www.ncbi.nlm.nih.gov/pubmed/36479359
http://dx.doi.org/10.2478/joeb-2022-0009
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